Modules

201 results

Specialization Phase201

Allgemeine Relativitätstheorie und KosmologieNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the fundamentals of general relativity and its application in astrophysics and cosmology. You understand how spacetime curvature generates gravity, you will become familiar with the Schwarzschild solution and black holes, you will engage with gravitational waves and the basics of modern cosmology.10 ECTSruns this semesterPH2043Angewandte Multi-Messenger-Astronomie 1No ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn fundamentals and current topics of multi-messenger astronomy, focusing on high-energy processes and measurements of neutrinos, gamma rays and cosmic rays (MeV–EeV). By the end you will be able to contextualize relevant scientific results and apply basic statistical and programming techniques for data analysis in Python.5 ECTSruns this semesterPH2281Angewandte Supraleitung 1: von Josephson-Effekten zur RSFQ-LogikNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn the fundamentals and applications of superconductivity from macroscopic-quantum-theoretical description to real circuits. The focus is on Josephson effects, SQUIDs and superconducting digital electronics (in particular RSFQ). In the end you will be able to explain the physical principles and apply them to weakly coupled superconductors, Josephson contacts as well as superconducting sensors and digital circuits.5 ECTSruns this semesterPH2030Astroteilchenphysik 1No ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the connections between cosmology and particle physics: fundamentals of the Standard Model and cosmology, important cosmological observations, and how elementary particles influence the evolution and geometry of the universe. In the end you will be able to explain observations such as the cosmic microwave background and primordial nucleosynthesis, and discuss the role of dark matter as well as possible detection methods.5 ECTSruns this semesterPH2073Bildverarbeitung in der PhysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn basic and advanced techniques of image processing and image reconstruction with a focus on applications in physics. In the end you will be able to apply filter- and Fourier-based methods, interpolation, segmentation, noise and resolution analysis, tomographic reconstruction as well as fundamental concepts of wave propagation and phase-contrast imaging, and assess their respective strengths and limitations.5 ECTSruns this semesterPH2181
196 more in Specialization PhaseBiomedizinische Physik 1No ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the physical foundations of the most important imaging procedures in clinics and research. After the module you will be able to explain the generation of images in CT, MRI, PET/SPECT, X-ray and ultrasound, assess their advantages and disadvantages, and name the basic principles of detection and measurement.5 ECTSruns this semesterPH2001Biomedizinische Physik 2No ratings for this module yet.Physics Special Courses and Theory CourseYou learn the physical foundations of important biomedical applications in clinics and research, including radiation therapy, laser applications, and various microscopy techniques. In the end you will be able to describe the operating principles, advantages and disadvantages of these procedures and explain basic aspects of radiation planning and radiation sources.5 ECTSruns this semesterPH2002Biophysik der Zelle 1No ratings for this module yet.Physics Special Courses and Theory CourseYou learn physical principles that determine the behavior of cells and their building blocks, e.g. fluid mechanics at low Reynolds numbers, diffusion, gene regulation, reaction kinetics, conformational dynamics, enzymatic catalysis, polymer elasticity and membrane physics. By the end you can explain dynamic and steady-state properties of macromolecular state changes and bimolecular reactions and classify terms such as entropy elasticity, dissociation constant, transition state and transition rate, as well as describe enzymatic catalysis.5 ECTSruns this semesterPH2013Computergestützte MaterialphysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn modern theoretical and computer-based methods for calculating material properties from atomic structure. The module covers the fundamentals and applications of density functional theory, ab-initio molecular dynamics, transport theories and machine-learning methods, so that you can assess their possibilities and limitations and perform simple calculations independently.10 ECTSruns this semesterNAT3031Data Science GrundlagenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn to load, explore, process, and visualize data and to apply basic statistical methods. In the end you will be able to implement data analysis workflows with Python (NumPy, pandas, SciPy) and accompanying tools, perform simple statistical adjustments, and provide results reproducibly.10 ECTSruns this semesterNAT3021Einführung in die AstrophysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will get an overview of modern astrophysics: radiation and matter, observational instruments, stars, galaxies, black holes, interstellar medium and cosmology. In the end you will be able to explain the formation, evolution and end states of stars, describe different types of galaxies, reproduce basic principles of black holes and sketch the fundamentals of cosmology.5 ECTSruns this semesterPH2058Einführung in die DatenanalyseNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn fundamental methods for analyzing experimental data: concepts of probability, distributions, error propagation, parameter estimation (Least Squares and Maximum Likelihood) and significance estimation. In the end you will be able to apply these methods to suitable data and estimate uncertainties as well as the significance of signals.5 ECTSruns this semesterPH2099Einführung in die Synthese von Nanomaterialien und NanostrukturenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to the synthesis of nanomaterials and nanostructures. At the end you will be able to understand fundamental synthesis methods and comprehend applied questions related to the production and control of nanoscale materials.5 ECTSruns this semesterNAT3018Einführung in Machinelles Lernen in den MaterialwissenschaftenNo ratings for this module yet.Physics Special Courses and Theory CourseThe course provides the fundamentals of machine learning with a focus on applications in materials science. You will learn typical methods (e.g., clustering, regression, classification, deep learning, Bayesian optimization), work with materials science datasets, and practice practical implementation in Python notebooks. In the end you will be able to select appropriate representations and methods, evaluate models, and carry out a small ML project in materials science.5 ECTSruns this semesterNAT3037Elektronische Struktur von FestkörpernNo ratings for this module yet.Physics Special Courses and Theory CourseYou engage with the electronic structure of crystalline solids from fundamentals to current research topics. You learn theoretical concepts and computational methods and can assess experimental methods for determining band structures and Fermi surfaces as well as explain connections between electronic structure and physical properties of materials.5 ECTSruns this semesterPH2275Energie-Materialien 1No ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will gain a broad overview of functional materials that are today used or researched for energy generation, conversion and storage. You will learn the relevant material classes, their important properties and indicators, and you will be able to evaluate materials and their suitability for various energy applications.5 ECTSruns this semesterPH2201Erneuerbare Energie: Mechanische, thermische und elektrochemische UmwandlungNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSruns this semesterNAT3052Fortgeschrittene elektronische Struktur, KlausurNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn concepts and technologies of electronic structure theory, starting with potential energy surfaces up to methods such as Hartree–Fock, correlated wave functions and density functional theory. In the end you will be able to qualitatively explain the methods, assess their applications and limitations, and solve simple electronic structure problems independently.5 ECTSruns this semesterCH3333Fortgeschrittene HalbleiterphysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn advanced concepts of semiconductor physics and can, at the end, computationally and conceptually address central electronic properties of semiconductors as well as transport and interface phenomena. The module provides an understanding of band structure, effective masses, Fermi level calculation, and currents at metal-semiconductor interfaces.10 ECTSruns this semesterPH2155Fortgeschrittene statistische PhysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou deal with phase transitions, critical phenomena and their theoretical descriptions (Landau-Ginzburg, renormalization group). You also learn the basics of irreversible and non-equilibrium processes as well as percolation theory. In the end you will be able to interpret critical exponents and apply renormalization group methods to concrete models.10 ECTSruns this semesterNAT3002GravitationslinseneffektNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the physical foundations of gravitational lensing and how light is deflected by gravity of stars, galaxies and galaxy clusters. In the end you will be able to describe lensing effects, apply them as an observational and analytical tool, and, for example, determine masses of galaxies as well as address questions related to dark matter and cosmology.5 ECTSruns this semesterPH2242Halbleitersynthese und NanoanalytikNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn modern procedures for the production and nanoscale characterization of semiconductor thin films. In the end you can describe the physical foundations and experimental implementations of important deposition and analysis methods and critically interpret experimental results.5 ECTSruns this semesterPH2189Kinetik zellulärer ReaktionenNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn how to formulate, mathematically describe and solve kinetic models of cellular and biochemical reactions – from classical approximations to numerical and stochastic methods. In the end you can practically implement these models (e.g., in Mathematica), distinguish between ensemble- and single-molecule considerations, and analyze typical single-molecule phenomena such as processivity or randomness.5 ECTSruns this semesterPH2023KontinuumsmechanikNo ratings for this module yet.Physics Special Courses and Theory CourseThe module conveys the fundamentals of continuum mechanics for fluids and elastic media. You will learn kinematics and balance equations, central principles of hydrodynamics (e.g., viscosity, Bernoulli, Reynolds number, waves) as well as the fundamentals of linear elasticity and propagation of elastic waves. In the end you will be able to calculate relevant field quantities and describe basic flow and deformation phenomena.10 ECTSruns this semesterPH1007Konzepte für Experimente an zukünftigen Collidern 1No ratings for this module yet.Physics Special Courses and Theory CourseYou learn how experiments at future hadron colliders are planned and technically implemented to investigate open questions beyond the Standard Model. In the end you understand the fundamentals of the Standard Model, the challenges of future accelerators (e.g., HL-LHC, FCC), as well as the relevant detector technologies and analysis principles.5 ECTSruns this semesterNAT3029Kosmologie und StrukturbildungNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the fundamentals of modern cosmology: how the Universe evolves within the Friedmann-Robertson-Walker metric, how density fluctuations arise and grow, and how these processes shape the cosmic microwave background (CMB). By the end you will be able to solve the Friedmann equations, calculate the formation and evolution of structures, and compare theoretical predictions (e.g., about inflation) with observations.10 ECTSruns this semesterPH2248Magnetismus und magnetische MaterialienNo ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn the fundamental properties of magnetic materials, from atomic dia- and paramagnetism to the macroscopic magnetic order in solids. After completing the module you will be able to analyse the temperature dependence of magnetic phases, explain micromagnetic phenomena such as domains and domain walls, as well as classify magnetoresistive effects and some experimental methods.10 ECTSruns this semesterPH2265Moderne RöntgenphysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will get to know the fundamentals of modern X-ray physics with a focus on imaging methods, both for synchrotron radiation and for modern laboratory sources (e.g. compact synchrotron MuCLS). In the end you can assess sources, interactions with matter, detectors and imaging methods and name suitable parameters for experiments (source size, coherence, energy resolution, detector choice).5 ECTSruns this semesterPH2182Nanostrukturierte, Weiche Materialien 1No ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to nanostructured, soft materials and their applications. You will learn the fundamental types (colloids, polymers, liquid crystals, amphiphiles, biopolymers) as well as structured surfaces, and after the module you will be able to place properties, self-organization processes, and typical application areas in context.5 ECTSruns this semesterPH2048NanotechnologieNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn fundamental methods of nanofabrication (e.g., optical lithography, electron-beam lithography, FIB) as well as newer techniques (e.g., X-ray lithography, nanoimprint). In addition you will cover bottom-up growth methods for semiconductor nanostructures (e.g., MOCVD, MBE) and methods for nano-analytical characterization (e.g., electron microscopy, X-ray methods, atom probe tomography). In the end you will be able to assess fabrication methods and analysis techniques and estimate their interplay with structural and electronic properties for technological applications.5 ECTSruns this semesterPH2183Nichtlineare Dynamik und komplexe Systeme 1No ratings for this module yet.Physics Special Courses and Theory CourseYou learn the fundamental concepts of nonlinear dynamical systems: how cooperative phenomena such as bistability, self-sustained oscillations, and deterministic chaos arise from nonlinearities. In the end you will be able to perform phase-space analyses, describe stability and bifurcations, and characterize simple chaotic attractors with suitable measures.5 ECTSruns this semesterPH2027Nichtrelativistische effektive Feldtheorien bei null und endlicher TemperaturNo ratings for this module yet.Physics Special Courses and Theory CourseThe module conveys effective field theories for nonrelativistic bound systems and their behavior at zero and finite temperature. You will learn how to systematically obtain quantum-mechanical descriptions from the underlying quantum field theory and calculate observables such as spectra, transitions and decay rates as well as the development of bound states in hot media.10 ECTSruns this semesterPH2302Photonik und Ultrakurzzeitphysik 1No ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn the foundations of modern optics, laser physics and ultrafast pulse technology and their applications. By the end you will be able to describe propagation and properties of laser beams, analyze optical systems and resonators, understand methods of Fourier optics and nonlinear optics as well as the generation and propagation of ultrashort pulses.5 ECTSruns this semesterPH2158Physik elektrochemischer GrenzflächenNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn physical and electrochemical fundamentals of solid-liquid interfaces that are relevant for energy conversion and storage processes (e.g., batteries, fuel cells, water electrolysis, supercapacitors). Topics include thermodynamics, microscopic structure of the interface, charge transfer kinetics and transport in the electrolyte, as well as modern methods for probing these interfaces. In the end you can apply these concepts to macroscopic electrodes, nano- and microelectrode arrays, and structured surfaces, and classify the learned measurement methods.5 ECTSruns this semesterPH2274Physik mit Positronen 1No ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to physics with positrons and their applications in materials science, solid-state and surface physics. You will learn how positron sources and monoenergetic positron beams are realized and guided, how positrons interact with matter, and how positronium is produced and measured. In the end you will be able to explain common positron measurements and detectors, and in particular positron lifetime spectrometers, and apply them to the investigation of crystal defects.5 ECTSruns this semesterPH2075Physik und Charakterisierung fortschrittlicher BatteriesystemeNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSruns this semesterNAT3059Plasmaphysik 1No ratings for this module yet.Physics Special Courses and Theory CourseYou receive an introduction to plasma physics: fundamentals, typical models and applications in nature and technology. At the end you will be able to describe basic plasma phenomena, explain the behavior of charged particles and plasmas in magnetic fields, as well as analyze stability, instabilities and Alfvén waves and explain simple plasma diagnostics and applications.5 ECTSruns this semesterPH2035Polymerphysik 1No ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to the physics of polymers: from classical and modern applications, through the description of chain conformations, to properties of solutions, melts and crystalline polymers. In the end you will be able to describe polymer structure and properties, analyze characterization methods and phase diagrams, and assess mechanical and thermal properties.5 ECTSruns this semesterPH2046Quanten-Computing mit supraleitenden Qubits: Basic ConceptsNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSruns this semesterNAT3036Quanten-VielteilchenphysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the theoretical foundations of quantum many-body physics, common methods and typical phenomena. In the end, you can apply these methods computationally and explain the phenomena discussed at the level of the presented models.10 ECTSruns this semesterPH2256QuantenfeldtheorieNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the fundamental concepts and calculation methods of quantum field theory: path integrals, perturbation theory and Feynman diagrams, Green's functions and their connection to scattering cross sections, as well as renormalization and effective field theories. In the end you will be able to perform perturbative calculations including loop corrections, quantize gauge theories and use the renormalization group to improve perturbative computations.10 ECTSruns this semesterPH2041QuantenhardwareNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn basic concepts and technologies of quantum hardware. In the end you will be able to describe characteristic properties of components and systems of quantum hardware and solve simple calculations and comprehension questions on these topics.10 ECTSruns this semesterNAT3034Quantenmechanik 2No ratings for this module yet.Physics Special Courses and Theory CourseYou deepen concepts of quantum mechanics beyond the nonrelativistic single-particle description: path integrals, open quantum systems, second quantization, identical particles as well as relativistic single-particle equations (Klein–Gordon, Dirac) and their applications (e.g. hydrogen spectrum). In the end you will be able to apply these formalisms, describe quantized fields and solve simple problems such as the open two-state system or the Dirac equation in a central potential.5 ECTSruns this semesterNAT3001QuantensensorikNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSruns this semesterPH2317Quark-Gluon-Plasma: Untersuchung eines extremen Aggregatzustands am LHCNo ratings for this module yet.Physics Special Courses and Theory CourseYou engage with the quark-gluon plasma, an extreme state of matter as it forms in heavy-ion collisions at the LHC. In the end you will be able to describe and exemplarily apply central observables, analysis methods and model approaches for characterizing this state.5 ECTSruns this semesterPH2278Rechnergestützte Physik 1No ratings for this module yet.Physics Special Courses and Theory CourseYou learn basic numerical methods for solving ordinary and simple partial differential equations as well as related techniques of numerical mathematics (integration, differentiation, equation solvers, linear algebra, data fitting). In the end you will be able to implement these methods in various programming languages, classify differential equations and formulate and numerically solve suitable differential equations for physical problems.5 ECTSruns this semesterPH2057Starke Wechselwirkung in BeschleunigerexperimentenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the experimental and theoretical foundations of the strong interaction (QCD) in the context of accelerator experiments. In the end you will understand how hadron production and jets arise in e+e-, ep- and pp/p anti-p scattering, how to apply event shapes and jet algorithms, and how QCD coupling constants and fragmentation models are determined experimentally.5 ECTSruns this semesterPH2254Supraleitung und Tieftemperaturphysik 1No ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn the fundamental phenomena, theories and applications of superconductivity. You will understand both phenomenological descriptions (London, Ginzburg–Landau) and central aspects of the BCS theory and be able to explain properties of Type-I and Type-II superconductors as well as their relevance for applications.5 ECTSruns this semesterPH2031Synthetische Biologie 1No ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to the basics of synthetic biology with a focus on synthetic gene circuits. You will learn molecular biology foundations, quantitative methods for describing gene expression, and dynamic properties of biological systems. In the end you will be able to understand simple gene circuits and describe gene regulation quantitatively.5 ECTSruns this semesterPH2228TeilchenoszillationenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the quantum mechanical foundations and experimental aspects of particle oscillations, starting with neutral mesons and CP violation up to neutrino oscillations in two and three flavours. In the end you will be able to apply formalisms such as PMNS/CKM, assess differences between meson and neutrino oscillations, and classify experimental detection methods as well as open questions.5 ECTSruns this semesterPH2210Theoretische FestkörperphysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou receive a compact introduction to theoretical solid-state physics: from symmetries and crystal structures through lattice vibrations and electronic conduction to interacting electron systems. In the end you will be able to mathematically describe and calculate simple models for the structure, dynamics, and phase transitions of condensed matter.10 ECTSruns this semesterPH1001Theorie und Anwendung einfacher Lie-AlgebrenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to the fundamentals and examples of Lie algebras of small and medium size and their representations. By the end you will know the classification by root systems and Dynkin diagrams, understand highest weights for representations, and the complete classification of real and complex Clifford algebras.5 ECTSruns this semesterPH2136Vom Hall-Effekt zur QuantenphysikNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSruns this semesterNAT3058Wesentliche Konzepte in der theoretischen BiophysikNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSruns this semesterNAT3004Aktuelle Themengebiete der Oberflächen- und NanowissenschaftenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn current topics in surface and nanoscience, from fundamental concepts to current research topics. In the end you will be able to explain the physical methods and concepts taught, apply them to concrete questions, and argue their justification in scientific discussions.5 ECTSno date this semesterPH2072Analyse von neuartigen funktionellen Materialien mit Synchrotronstrahlung: Techniken und AnwendungenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will gain a comprehensive overview of modern, photon-based methods—especially those using synchrotron radiation—for investigating functional materials. In the end you will be able to explain the physical fundamentals of synchrotron radiation and the experimental techniques (e.g., X-ray scattering, absorption spectroscopy, photoelectron spectroscopy, time-resolved measurements) and assess their information content for structural, electronic and magnetic questions.5 ECTSno date this semesterPH2134Angewandte Multi-Messenger-Astronomie 2No ratings for this module yet.Physics Special Courses and Theory CourseThe module introduces multi-messenger astronomy with a focus on high-energy processes (neutrinos, gamma- and cosmic-ray radiation in the MeV–EeV range). You will learn to analyze large data sets with statistical and computational methods and to combine observations from different instruments. In the end you will be able to understand important results in the field and practically apply fundamental methods of statistics, data analysis, and software development.5 ECTSno date this semesterPH2282Angewandte Plasmaphysik: Große Wirbel (Zonal flows und andere Strukturen) in Kernfusionsreaktoren, auf dem Jupiter, in Klima und AstrophysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn how large-scale structures such as zonal flows form in turbulent systems – using fusion plasmas as an example, but also in planetary and astrophysical contexts (e.g. Jupiter, Earth’s atmosphere). In the end you will be able to describe the relevant fundamental equations and mechanisms and assess their importance for heat transport and self-organization.5 ECTSno date this semesterPH2233Angewandte QuantenmechanikNo ratings for this module yet.Physics Special Courses and Theory CourseThis module covers applied quantum mechanics with a focus on fundamentals and applications in quantum information. By the end of the module you will be able to understand the central concepts of quantum mechanics and apply them to problems of quantum computation and information.5 ECTSno date this semesterPH2205Angewandte Supraleitung 2: von supraleitenden Quantenschaltkreisen zu Quantenoptik mit MikrowellenNo ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn the physics of superconducting quantum circuits and how they are used for quantum information, quantum simulation, and quantum sensing with microwaves. In the end you will be able to explain the essential building blocks (resonators, qubits, circuit-QED) and describe the basics of quantum communication and propagating quantum microwaves.5 ECTSno date this semesterPH2145Astrophysik außerhalb der GalaxieNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn methods and measurement procedures for examining objects outside our galaxy. In the end you will be able to illustrate and apply, for example, how distances to galaxies are determined, star formation rates estimated, and the masses of supermassive black holes measured.5 ECTSno date this semesterPH2206Astroteilchenphysik 2No ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the connections between cosmology and particle physics: from the fundamentals of the Standard Model and cosmology to observable properties of the universe and current questions such as dark matter, neutrino physics, cosmic radiation and gravitational waves. In the end you will be able to link key observations (CMB, primordial nucleosynthesis, large-scale structure) with particle physics and discuss candidates as well as detection methods for dark matter.5 ECTSno date this semesterPH2074Beobachtende AstrophysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will gain a broad overview of observational approaches to the universe: telescopes, experiments and methods from radio to gamma, neutrinos, cosmic radiation, meteorites and gravitational waves. In the end you will be able to assign physical processes in cosmic objects to the appropriate observation methods and categorize instruments as well as typical astrophysical questions.5 ECTSno date this semesterPH2114Beobachtende KosmologieNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn the fundamentals of modern cosmology: from the basic equations of general relativistic cosmology through expansion, the Big Bang and recombination to dark matter, dark energy and the development of large-scale structures. In the end you will be able to name cosmological concepts, understand the measurement of cosmological parameters and explain the key arguments for dark matter and dark energy.5 ECTSno date this semesterPH2199Biophysik der Zelle 2No ratings for this module yet.Physics Special Courses and Theory CourseYou will learn physical fundamentals and modern methods for investigating cells and cellular processes. The emphasis is on optical and fluorescence-based microscopy methods, the physics of hearing, properties of biological membranes, as well as the structure of viruses and basics of immunology. In the end you will be able to explain the functioning of the methods and systems studied and assess their experimental access.5 ECTSno date this semesterPH2014Brennstoffzellen in der EnergietechnikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the physical-chemical fundamentals, construction principles and energetic aspects of fuel cells. In the end you will be able to estimate efficiencies and losses, explain the principle of different cell types and assess advantages and disadvantages of different fuels.5 ECTSno date this semesterPH2068Chemie der biomedizinischen Bildgebung für PhysikerNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the chemical foundations of contrast agents for various biomedical imaging modalities (CT, MRI, PET, microscopy). In the end you will be able to derive the mode of action and chemical properties of the discussed contrast agents and assess their suitability for specific imaging tasks.5 ECTSno date this semesterPH2226Computerbasierte MaterialphysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn modern theoretical methods of computer-based materials physics and how to apply them. The focus is on density functional theory and ab initio molecular dynamics for the microscopic description of physical and chemical properties of real materials. In the end you can assess the fundamentals, possibilities and limitations of these methods and independently perform and interpret simple calculations on material systems.5 ECTSno date this semesterPH2289Computergestützte Methoden in der VielteilchenphysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn computer-based methods for investigating many-particle systems, from numerical algorithms to machine learning techniques. In the end you will be able to apply typical algorithms and understand and assess the underlying concepts.10 ECTSno date this semesterPH2264Computing in und mit biologischen SystemenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn how biological systems store, process and transmit information. The module conveys concepts of information and computation in living systems as well as bio-inspired computing paradigms and biomolecular approaches. In the end you will be able to explain biological information processing and assess the application of molecular and cellular mechanisms in computing and robotics systems.5 ECTSno date this semesterNAT3050DatenanalyseNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn the fundamentals and methods of data analysis and how to apply them, in particular statistical concepts and probabilistic approaches for evaluating measurement and experimental data. In the end you will be able to present data analysis results and discuss the underlying insights independently.5 ECTSno date this semesterPH2221Effektive FeldtheorienNo ratings for this module yet.Physics Special Courses and Theory CourseYou deal with effective field theories. At the end you will be able to apply and explain the competencies described in the learning objectives at the indicated level of knowledge in a nachvollziehbar manner.10 ECTSno date this semesterPH2122Einführung in die FlavorphysikNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterPH2268Einführung in die KristallzüchtungNo ratings for this module yet.Physics Special Courses and Theory CourseYou receive a systematic introduction to crystal growth: from thermodynamic fundamentals through phase diagrams to concrete growth methods for single crystals and thin films. In the end you will be able to explain thermodynamic relationships, interpret phase diagrams and derive suitable growth methods as well as metallurgical investigation procedures.5 ECTSno date this semesterPH2144Einführung in die QCDNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterPH2042Einführung in die theoretische AstrophysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn fundamental concepts of theoretical astrophysics, from the structure and dynamics of compact objects to stars and up to galaxies and galaxy clusters. In the end you will be able to apply physical principles (gravitation, hydrodynamics, radiative transfer, equations of state), derive simple scaling relations, and describe astrophysical examples such as white dwarfs, stellar evolution, accretion, and shock fronts.5 ECTSno date this semesterPH2080Einführung in exotische Zustände in der hadronischen PhysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou are dealing with exotic states in hadronic physics. In the end you will be able to understand fundamental properties of the strong interaction and characteristics of certain hadron spectra, and you will know important experimental techniques for observing exotic states.5 ECTSno date this semesterNAT3056Elektronen in niedrig-dimensionalen StrukturenNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn how electrons behave in solids when their mobility is confined to a few dimensions. The module covers band structure, quantum and surface states, nanostructures (quantum films, wires, dots), experimental methods, and transport phenomena up to Coulomb blockade and quantized transport effects.5 ECTSno date this semesterPH2284Elektronenmikroskopie in den MaterialwissenschaftenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to raster and transmission electron microscopy (SEM and TEM). You will learn the fundamentals of electron optics, image formation and contrast mechanisms, common analytical methods, and selected sample preparations; at the end you will be able to perform simple alignments and carry out routine analyses on beginner instruments.5 ECTSno date this semesterNAT3060Elementare Prozesse in molekularen SystemenNo ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn to describe elementary electronic, energetic and protonic processes in molecular systems on a quantum-mechanical basis. At the end you will be able to qualitatively and quantitatively analyze transition processes (radiative and non-radiative), energy transfer, electron- and proton-transfer as well as factors such as reorganization and disorder.5 ECTSno date this semesterPH2187Energie-Materialien 2No ratings for this module yet.Physics Special Courses and Theory CourseYou learn which functional materials are used in energy technology and energy storage, how they are designed, and which methods serve to characterize them. By the end you will be able to assess important material classes, explain design principles for controlling their function, and compare common analytical procedures.5 ECTSno date this semesterPH2207Entstehung und Nachweis von GravitationswellenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the basics of General Relativity and the development as well as the detection of gravitational waves. In the end you will be able to apply tensor methods and the linearized field theory, describe typical gravitational sources and their signals, as well as explain the operating principles of different detector types.5 ECTSno date this semesterPH2128Erneuerbare Energie: Umwandlung mit Hilfe von SonnenlichtNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterNAT3053Erneuerbare EnergienNo ratings for this module yet.Physics Special Courses and Theory Course10 ECTSno date this semesterPH2160Explodierende SterneNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn to recognize observations, classification, and the physical principles of stellar explosions (supernovae). In the end you will be able to describe the main types of explosions and their physical causes, perform simple order-of-magnitude estimates for relevant quantities, and assess what information electromagnetic signals, neutrinos, and gravitational waves provide.5 ECTSno date this semesterPH2078Farbige Schleifen: Einführung in die Quantenchromodynamik und SchleifenrechnungenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to quantum chromodynamics (QCD) and calculations with loop integrals. At the end you will be able to understand basic concepts of QCD and qualitatively and computationally reproduce simple loop calculations as well as related divergence structures and physical consequences.5 ECTSno date this semesterPH2267Feldtheoretische Methoden in der Physik kondensierter MaterieNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn field-theoretical methods and paradigms that are central to modern solid-state physics. In the end you will be able to apply field theory techniques to problems in condensed matter and you will understand the physics of Fermi liquids, one-dimensional Luttinger liquids, superconductors/superfluids, and quantum Hall liquids.5 ECTSno date this semesterPH2244Fortgeschrittene Allgemeine RelativitätstheorieNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn the theoretical foundations of general relativity, the main methods for describing curved spacetimes, and selected physical phenomena. In the end you can follow the basic calculations of the field equations and examples of physical applications and apply them independently to exercise problems.5 ECTSno date this semesterNAT3046Fortgeschrittene Methoden in Collider-PhysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou engage with analytical and numerical methods for calculating processes in collider physics. Topics include, among others, virtual amplitudes, infrared divergences, subtraction schemes, as well as resummation and basics of parton showers. In the end you will be able to apply modern techniques for calculating QCD amplitudes, describe the structure of iterated integrals and multiple polylogarithms, and understand IR problems and resummation.5 ECTSno date this semesterNAT3040Fortgeschrittene Methoden in der Quanten-VielteilchenphysikNo ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn advanced theoretical methods of quantum many-body physics. By the end you will be able to apply and assess central techniques for exactly solvable models, topological phases, and quantum-dynamic representations.10 ECTSno date this semesterPH2297Fortgeschrittene Methoden in der Theorie von StreuamplitudenNo ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn advanced methods of the theory of wave amplitudes. By the end you will be able to apply the theoretical techniques covered to problems in wave amplitude theory.5 ECTSno date this semesterPH2320Fortgeschrittene QuantenfeldtheorieNo ratings for this module yet.Physics Special Courses and Theory CourseYou deal with advanced methods of quantum field theory: unitarity, renormalization of non-abelian gauge theories, infrared divergences, effective actions, spontaneous symmetry breaking and anomalies, as well as quantized spin-1 and spin-2 fields. In the end you can apply these concepts and calculation methods, e.g. to compute scattering processes, loop corrections and effective field theories.10 ECTSno date this semesterPH2185Fortgeschrittene Quantenfeldtheorie IINo ratings for this module yet.Physics Special Courses and Theory CourseYou deepen methods and concepts of quantum field theory at an advanced level. In the end you can apply the techniques studied to complex field-theoretic questions and follow the corresponding calculations.10 ECTSno date this semesterNAT3055Fortgeschrittene Themen in der QuanteninformationstheorieNo ratings for this module yet.Physics Special Courses and Theory CourseYou engage with advanced topics of quantum information theory: from fundamental concepts to quantum communication and entanglement to quantum computing, classical simulation and verification of quantum processors. In the end you will be able to apply the treated concepts and assess the essential problems in simulation and verification.5 ECTSno date this semesterNAT3011Fortgeschrittene theoretische PhysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou engage with advanced aspects of theoretical physics. In the end you will be able to analyze complex case studies from theory and reproduce the developed solutions in written exams.10 ECTSno date this semesterPH1004FusionsforschungNo ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to fusion research with a focus on magnetic fusion. The module explains the fundamentals of nuclear fusion, different magnetic confinement concepts (e.g., mirror, pinch, tokamak, stellarator), heating and diagnostics of plasmas, as well as current research results. By the end you will be able to describe the basic fusion processes, the most important confinement concepts, and the relevant methods for heating and diagnostics.5 ECTSno date this semesterPH2196Gasdetektoren: Theorie und PraxisNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the physical principles and practical applications of gaseous particle detectors. In the end you will be able to explain particle interactions with matter, describe fundamental detector geometries and operating principles of gaseous detectors, and assess their limitations and areas of application.5 ECTSno date this semesterPH2208Grundlagen der Oberflächen- und NanowissenschaftenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn fundamental concepts of surface and nanoscience: structure and analysis of surfaces, electronic, chemical and vibrational properties, as well as elementary processes such as adsorption, diffusion and surface reactions. In the end you will be able to describe various nanoscale objects and fabrication methods (top-down, bottom-up, Self-Assembly) and explain their applications in catalysis, electronics and spintronics.5 ECTSno date this semesterPH2071Gruppentheorie in der PhysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou receive an introduction to group theory with a focus on applications in particle physics. By the end you will be able to apply central concepts and statements of group theory, classify representations of SU(2), SU(3) and the Lorentz group, and construct character tables and weight diagrams.10 ECTSno date this semesterPH2116Hadronen an Beschleunigern und astrophysikalische Observablen 1No ratings for this module yet.Physics Special Courses and Theory CourseYou will learn how hadrons (strongly interacting particles) are studied in accelerator experiments and in astrophysical processes. In the end you will be able to describe experimental signatures and measurement methods for hadron properties in hot and dense core matter and explain their relevance for astrophysical observables.5 ECTSno date this semesterPH2301Halbleiter-Quanten-BauelementeNo ratings for this module yet.Physics Special Courses and Theory Course10 ECTSno date this semesterNAT3006Halbleiter-QuantenelektronikNo ratings for this module yet.Physics Special Courses and Theory CourseIn diesem Modul beschäftigst Du Dich mit Grundlagen und Anwendungen der Quantenelektronik in Halbleitern. Am Ende kannst Du die behandelten Konzepte anhand von Rechenaufgaben anwenden und verstehst die in den Lernzielen geforderten Kompetenzen auf der angegebenen Erkenntnisstufe.5 ECTSno date this semesterPH2290Halbleiterelektronik und Photonische BauteileNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the basics and functioning of electronic and optoelectronic semiconductor-based components as well as their realization. In the end you will be able to describe and evaluate the physical principles, typical characteristic curves and application areas of important micro- and optoelectronic components.5 ECTSno date this semesterPH2171Hochauflösende Astronomie: Adaptive Optik und Optische InterferometrieNo ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn how to use optical instruments and techniques to obtain astronomical images with high resolution. The focus is on adaptive optics to compensate for atmospheric disturbances as well as optical interferometry for aperture synthesis and precise astrometry; in the end you will understand the underlying optics, the functioning of the procedures, and their application to image restoration and data analysis.5 ECTSno date this semesterPH2059Intelligente MaterialienNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn fundamental properties of intelligent materials, especially those relevant for energy and data storage applications. The module introduces material classes such as piezoelectric, thermoelectric, ferro-/multiferroic and magnetoresistive materials, explains principles of their function, and demonstrates suitable experimental characterization methods. In the end you will be able to evaluate the materials and name the properties that are decisive for their performance as well as appropriate investigation procedures.5 ECTSno date this semesterPH2313Kinetik und nichtideale MHD-Phänomene im HochtemperaturplasmaNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterNAT3051Konzepte für Experimente an zukünftigen Collidern 2No ratings for this module yet.Physics Special Courses and Theory CourseYou will learn concepts and methods for experiments on future hadron colliders. The module covers statistical analysis methods, procedures for particle identification, fundamentals of readout electronics, and modern trigger systems. In the end you will be able to analyze data statistically, apply reconstruction and identification algorithms, and design simple readout circuitry and trigger concepts.5 ECTSno date this semesterNAT3030Konzepte moderner Sensoren zum StrahlungsnachweisNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the physical basics and technical concepts of modern radiation and particle detectors. In the end you will be able to describe the principles of common detection systems (e.g. scintillators, gas detectors, silicon detectors, calorimeters, time- and particle-identification detectors) as well as their interplay for event reconstruction.5 ECTSno date this semesterPH2293Konzepte moderner Statistik und Data Analytics in der TeilchenphysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn fundamental statistical concepts and their application in data analysis in particle physics. Building on principles of probability and entropy maximization, methods such as parameter estimation, correction procedures (e.g. unfolding), and determining limits for parameters that are not directly measurable are taught and applied to examples.5 ECTSno date this semesterPH2296Kosmologie und Strukturbildung 2No ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the fundamentals and techniques of cosmic inflation and nonlinear structure formation. The module conveys how inflation is described by scalar fields, how the statistical properties of primordial density fluctuations follow from that, and how weakly nonlinear structures up to gravitational collapse and bias can be treated quantitatively. By the end you will be able to analyze inflation theories, derive predictions for observables, and apply perturbation theory methods to structure statistics.5 ECTSno date this semesterNAT3015Magnetische und elektronische MessverfahrenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to the physics and technical implementation of modern magnetic measurement methods. After reviewing the fundamentals of magnetism, you will become familiar with various measurement methods, their physical principles and typical laboratory setups. In the end you will be able to select suitable measurement setups, assess the resolution limits, and explain interactions between sample and sensor.5 ECTSno date this semesterPH2107MagnetisierungsdynamikNo ratings for this module yet.Physics Special Courses and Theory CourseYou receive an introduction to the dynamics of spins and magnetization in solids. You will learn to derive motion equations for single spins and for the macroscopic magnetization, to understand ferromagnetic resonance and effective fields, and to analyze spin waves and the dynamics of magnetic solitons (domain walls, vortices, skyrmions).5 ECTSno date this semesterNAT3017MagnetismusNo ratings for this module yet.Physics Special Courses and Theory CourseYou will be introduced to the various manifestations of magnetism — from isolated atoms to correlated electron systems — as well as methods for its detection. At the end of the module you will be able to explain connections between magnetization, magnetic field and induction, assess magnetic material properties, and classify fundamental magnetic ordering phenomena and phase transitions.5 ECTSno date this semesterPH2033Magnetohydrodynamische Phänomene - eine EinführungNo ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to magnetohydrodynamic phenomena. In the end you will be able to understand and apply the fundamental principles and typical problems of magnetohydrodynamics.5 ECTSno date this semesterPH2037Maschinelles Lernen auf der atomaren SkalaNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn how machine learning is applied to atomic systems (molecules, solids): from data generation with DFT/quantum chemistry through suitable atomistic descriptors to machine-learned interatomic potentials and Hamiltonian learning. In the end you will be able to analyze datasets, select appropriate representations, train and evaluate ML models, and carry out your own atomic ML project.5 ECTSno date this semesterNAT3048Materialphysik auf atomarer Skala 1No ratings for this module yet.Physics Special Courses and Theory CourseYou learn how atoms are arranged in solids and how they move, and how these microscopic properties determine macroscopic material properties. In the end you will be able to analyze crystal structures and symmetries, understand point defects as well as simple statistical-thermodynamic models, and interpret phase diagrams or derive them from microscopic parameters.5 ECTSno date this semesterPH2218Materialphysik auf atomarer Skala 2No ratings for this module yet.Physics Special Courses and Theory CourseIn this module you investigate the arrangement and movement of atoms in solids with a focus on oscillatory (phonons) and diffusive dynamics. By the end you will be able to solve atomic equations of motion, interpret phonon dispersions and densities of states, and apply basic diffusion mechanisms and their modeling.5 ECTSno date this semesterPH2219Messbare Signale von kollabierenden und explodierenden SternenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will receive a theoretical and phenomenological introduction to multimessenger astrophysics of collapsing and exploding stars. You will learn the formation, properties and observation of neutrino and gravitational-wave signals as well as their measurement methods and, in the end, you will be able to explain which information these signals provide about stellar explosions.5 ECTSno date this semesterNAT3022Methoden und Datenanalyse in der Biophysik 1No ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn methods of data analysis and typical measurement processes in biophysics. You will practice statistics, error analysis, noise consideration, data sampling and filtering, as well as basics of scanning force microscopy (AFM) and simple Bayesian statistics, so that you can critically evaluate measurement data and perform basic analysis tasks independently.5 ECTSno date this semesterPH2251Methoden und Datenanalyse in der Biophysik 2No ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterPH2257Moderne Aspekte des MagnetismusNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterPH2280Moderne Experimente mit Kernen, Teilchen und NeutronensternenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn how matter is structured under extreme conditions, exemplified by neutron stars, and which experimental methods are used today to investigate nuclei, light baryons and strong interactions. In the end you can analyze the interplay of the four fundamental interactions in such systems and you will be prepared to contribute to modern experiments in particle and nuclear physics at large research centers.5 ECTSno date this semesterNAT3014Molekulardynamik-SimulationenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn how molecular simulations are constructed, performed, and analyzed. After the module you will be able to plan, carry out independently, and evaluate thermodynamic as well as kinetic quantities from simulations using methods such as molecular dynamics, Monte Carlo, and Brownian dynamics.5 ECTSno date this semesterPH2019Musterbildung und Dynamik in Nichtgleichgewichts-SystemenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn how spatial and temporal patterns arise and change in non-equilibrium systems. In the end you will be able to perform stability analyses, explain typical pattern and dynamics types, and apply numerical methods to study such systems.5 ECTSno date this semesterNAT3019Nano- und OptomechanikNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn about the structure, function, and design of mechanical resonators as well as of NEMS and optomechanical detectors. In the end you will be able to describe different device types and their advantages and disadvantages, model the key interactions between resonator and detector, and plan simple experiments to measure optomechanical effects.5 ECTSno date this semesterPH2255NanoplasmonikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the physical foundations and technologies of nanophotonic metal systems and nanostructures. The focus is on the light–matter interaction at metal–dielectric interfaces, generation and detection of surface plasmon polaritons, as well as plasmonic waveguides and nanoparticles. In the end you can derive dispersion relations, name generation and detection methods, and assess basic fabrication and application aspects.5 ECTSno date this semesterPH2173Nanoscience mittels RastersondenmikroskopieNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the fundamentals and applications of scanning probe microscopy (e.g., AFM, STM). In the end you will be able to distinguish different measurement modes, sketch experimental setups, and discuss basic measurement-related questions.5 ECTSno date this semesterPH2140Nanostrukturierte, Weiche Materialien 2No ratings for this module yet.Physics Special Courses and Theory CourseYou learn fundamentals and current topics on nanostructured, soft materials with a focus on multicomponent systems, biological as well as optical and electrical properties. At the end you can assess the structure, stability mechanisms and functional properties of emulsions, foams, biological membranes, polymers, gels, metal–polymer composites, photonic crystals and their relevance for energy storage and conversion.5 ECTSno date this semesterPH2049Neutrinos und gesellschaftliche AnwendungenNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn the fundamentals of neutrino physics and their applications in society and technology, e.g. reactor and geo-neutrinos as well as monitoring and communication scenarios. In the end you will be able to describe and assess physical concepts and current applications of neutrinos.5 ECTSno date this semesterPH2305Neutronen- und Röntgenstreuung an kondensierter MaterieNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn experimental scatter methods (neutrons, X-rays, electrons) to study condensed matter. The course combines theory, laboratory exercises and data analysis, so you can subsequently plan, predict and interpret scattering experiments.5 ECTSno date this semesterNAT3057Nichtgleichgewichtsdynamik von QuantenvielteilchensystemenNo ratings for this module yet.Physics Special Courses and Theory Course10 ECTSno date this semesterNAT3038Nichtlineare Dynamik und komplexe Systeme 2No ratings for this module yet.Physics Special Courses and Theory CourseYou will learn how self-organization and pattern formation in spatially extended, dissipative systems can be described mathematically. The focus areas are reaction–diffusion systems (waves, pulses, spiral waves, Turing structures) and coupled oscillators (Kuramoto transition, complex Ginzburg–Landau equation) as well as the simulation and classification of the resulting patterns.5 ECTSno date this semesterPH2028Nukleare AstrophysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn how and where elements in the universe are formed, from carbon to iron and beyond. You understand the physical principles of nuclear reactions in stars, the time dependencies in explosive events, and how nuclear energy influences the structure of stars.10 ECTSno date this semesterPH2258Optische Spektroskopie von Halbleiter-Nanomaterialien und NanostrukturenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn optical spectroscopy as tools for investigating semiconductor nano-materials and nano-structures. In the end you will be able to describe the fundamental spectroscopic methods, classify their physical concepts, and critically discuss results.5 ECTSno date this semesterPH2291Photochemische Energieumwandlung und künstliche PhotosyntheseNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterPH2197Photonik und Ultrakurzzeitphysik 2No ratings for this module yet.Physics Special Courses and Theory CourseYou will learn about sources, methods and applications of ultrashort time physics, from ultrashort pulse lasers over high harmonics and attosecond pulses to synchrotrons and free-electron lasers. In the end you will be able to describe fundamental generation and characterization methods of ultrashort light pulses as well as spectroscopic techniques of femto- and attosecond spectroscopy and place current research applications in context.5 ECTSno date this semesterPH2159Physik der GeneNo ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn the physical properties of DNA and RNA — from thermodynamics and secondary structure to topology, polyelectrolyte behavior and the physical aspects of replication, transcription and translation. In the end you will be able to apply these concepts to biotechnological, genetic engineering and nanotechnological questions and perform simple calculations on DNA structure and thermodynamics.5 ECTSno date this semesterPH2277Physik der Magnetresonanzbildgebung 2No ratings for this module yet.Physics Special Courses and Theory CourseYou deepen the physical foundations of more complex MRI methods. After the module you will be able to understand signal formation and contrast mechanisms, analyze MR pulse sequences, and explain modern fast imaging techniques as well as methods for measuring micro- and macrovascular flow.5 ECTSno date this semesterPH2271Physik mit Neutronen 1No ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn the fundamentals and applications of neutron physics for the structural investigation of materials. You will gain knowledge on the generation and properties of free neutrons as well as on elastic neutron scattering, small-angle scattering and reflectometry, and you will be able to interpret typical neutron scattering data and understand instruments at the end.5 ECTSno date this semesterPH2053Physik mit Neutronen 2No ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn the deployment and evaluation of various neutron scattering methods, specifically for quasi-elastic and magnetic scattering, as well as applications such as neutron guides, polarization, ultracold neutrons, and applications in medicine and industry. At the end you will be able to understand magnetic cross sections and elastic magnetic neutron scattering data, measure and interpret magnon dispersions, and explain principles of polarization analysis and UCN applications.5 ECTSno date this semesterPH2054Physik mit Positronen 2No ratings for this module yet.Physics Special Courses and Theory CourseIn diesem Modul vertiefst du experimentelle Methoden der Positronenphysik, insbesondere spektroskopische Techniken zur Untersuchung von Elektronenimpulsverteilungen, Defekten und Oberflächen. Du lernst, wie man Fermi-Flächen und Elementkonzentrationen bestimmt, spinaufgelöste Messungen durchführt und Grundlagenexperimente zu Positronium, Positronium-Ionen sowie Anti-Wasserstoff beschreibt.5 ECTSno date this semesterPH2076Physik und Chemie funktionaler GrenzflächenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn about the physical and chemical properties of functional interfaces and can propose experimental methods to investigate such systems, as well as explain the effects of surface states and band deformations. In the end, you will be able to analyze and assess literature case studies and how organic interfaces optimize technical systems.5 ECTSno date this semesterPH2166Physik unter extremen BedingungenNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterPH2243Physikalisch-chemische Grundlagen genetischer InformationsverarbeitungNo ratings for this module yet.Physics Special Courses and Theory CourseYou engage with the physico-chemical foundations of storage, transmission and maintenance of genetic information. In the module you will learn energetic, thermodynamic and kinetic aspects of DNA/RNA as well as the mechanisms that influence topology and torsional stress of DNA. In the end you will be able to transfer these fundamentals to biological processes such as replication, repair and regulation and contextualize experimental findings.5 ECTSno date this semesterPH2154Plasmaphysik 2No ratings for this module yet.Physics Special Courses and Theory CourseYou will get an introduction to plasma physics: fundamentals, occurrences in nature and technical applications. The focus is on electrostatic and electromagnetic waves in plasmas, their use for diagnostics and heating, as well as nonlinear effects. You will also learn kinetic basics, derivation of fluid equations, transport processes, shock times, and ambipolar fields.5 ECTSno date this semesterPH2036Polymerphysik 2No ratings for this module yet.Physics Special Courses and Theory CourseYou will learn about advanced physical concepts of polymers (plastics), e.g. surfaces and interfaces, dynamics in melts, thin films, block copolymers, gels and electrical properties. In the end you will be able to describe these systems physically, assess their structures and properties, and categorize typical experimental methods.5 ECTSno date this semesterPH2047Präzisionsexperimente in der Teilchenphysik bei niedrigen EnergienNo ratings for this module yet.Physics Special Courses and Theory CourseYou engage in highly precise experiments in particle physics at low energies. In the end, you will understand which experimental methods are used to demonstrate phenomena such as neutrino mass, electric dipole moments, WIMP searches, or tests of Lorentz invariance, and you will be able to exemplarily explain experimental techniques and sensitivity questions.5 ECTSno date this semesterPH2272Prüfung zu Einführung in DatenanalysetechnikenNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterPH2309Quanten-Computing mit supraleitenden Qubits: von der Fabrikation zu AlgorithmenNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterNAT3033Quantendynamik und Spektroskopie, KlausurNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn methods of time-dependent quantum mechanics and their application in spectroscopy. The module conveys concepts such as density matrix formalism, response theory and light–matter interaction as well as dynamic spectroscopy. In the end you can qualitatively describe the methods, assess their applications and perform simple simulations.5 ECTSno date this semesterCH3335Quantenfehlerkorrektur und Fehlertoleranz für Computing und KommunikationNo ratings for this module yet.Physics Special Courses and Theory Course10 ECTSno date this semesterNAT3045Quantenfeldtheorie in gekrümmter RaumzeitNo ratings for this module yet.Physics Special Courses and Theory CourseThe module covers fundamentals and applications of quantum field theory in curved spacetime. You will learn to understand physical effects such as, for example, Hawking radiation, and to apply the corresponding calculations and concepts.10 ECTSno date this semesterPH2156QuanteninformationNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the fundamentals of quantum information theory: states and operations of qubits, entanglement, simple quantum algorithms, quantum measurement, quantum coding and elements of quantum error correction. In the end you will be able to apply fundamental concepts such as Schmidt decomposition, PPT criterion, Choi–Jamiołkowski isomorphism and simple quantum protocols and design simple circuits.10 ECTSno date this semesterNAT3035QuanteninformationNo ratings for this module yet.Physics Special Courses and Theory CourseThe module covers fundamentals of quantum information. You will learn concepts and methods of quantum computation and quantum information theory and will be able to apply basic principles and formalisms of quantum information after completion.5 ECTSno date this semesterPH2237Quanteninformationsmethoden in der VielteilchenphysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou engage with quantum mechanical many-body systems and learn how their physical properties arise from quantum correlations (entanglement). A focus is tensor network states such as Matrix Product States and Projected Entangled Pair States, with which you can describe states and numerically vary them. In the end you can construct MPS, build variational algorithms on top of them and understand fundamental phenomena such as topological order and symmetry-protected phases.5 ECTSno date this semesterPH2269QuantenmagnetisumsNo ratings for this module yet.Physics Special Courses and Theory CourseYou deal with theoretical aspects of quantum magnetism. In the end you will be able to explain central concepts such as parton descriptions of quantum magnetic states, quantum order by disorder, and the SDW phase picture of the half-filled Hubbard model along with the associated excitations.10 ECTSno date this semesterPH2310Quantenmechanik molekularer SystemeNo ratings for this module yet.Physics Special Courses and Theory CourseIn the module you will learn to apply quantum mechanical models to molecular systems to describe states and transitions. By the end you will be able to analyze, for example, pi-electron systems, harmonic and anharmonic vibrations, Born–Oppenheimer separation, as well as simple many-electron descriptions and transition rates for optical processes.5 ECTSno date this semesterPH2165Quantenmessverfahren in FestkörpersystemenNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterNAT3049QuantentechnologieNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn fundamental concepts and techniques of quantum technology, including quantum bits, control and decoherence. In the end you can explain and assess typical control sequences for qubits and how implementations on different platforms (e.g., superconducting qubits, spin-qubits in silicon) function and which error sources are relevant.5 ECTSno date this semesterPH2263Quantentransport: Theorie und BerechnungNo ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to modern theoretical methods for computer-based calculation of transport properties in materials and nanostructures. The focus is on electric charge transport and heat transport (phonons). In the end you will be able to understand the fundamentals of the theories and methods used, reproduce their application to simple systems, and interpret results.5 ECTSno date this semesterPH2294Reaktorphysik 1 und Anwendungen der KerntechnikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the physical fundamentals of nuclear reactions and reactors: structure of nuclei, nuclear fission, cross sections, neutron flux and moderation as well as the kinetics and control of chain reactions. In the end you will be able to explain neutron multiplication and the thermal neutron cycle and assess the performance characteristics of the Forschungs-Neutronenquelle FRM II.5 ECTSno date this semesterPH2050Reaktorphysik 2 und neue Konzepte in der KerntechnikNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn the physical fundamentals of neutron and reactor physics: diffusion, burn-up theory and eigenvalue equations for critical reactors as well as mechanisms of absorbers, reactor poisons and reactivity feedbacks. In the end you will be able to solve diffusion and eigenvalue problems in different geometries and explain various reactor types and their key figures.5 ECTSno date this semesterPH2051Rechnergestützte AstrophysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn how astrophysical questions can be realistically modeled with numerical methods. In the end you will know central algorithms for handling gravity, hydrodynamics, magnetohydrodynamics, relativistic flows, nuclear reactions and radiation transport and you will be able to build and apply simple numerical codes for such processes.5 ECTSno date this semesterPH2077Rechnergestützte Physik 2No ratings for this module yet.Physics Special Courses and Theory CourseYou will learn advanced numerical methods for classical and quantum mechanical problems. Topics range from random numbers, Fourier transforms and Monte Carlo techniques to nonlinear systems, chaos theory and fractals up to finite elements, wavelets, neural networks and fundamentals of lattice gauge theory. By the end you will be able to formulate such models numerically, implement them and assess them.5 ECTSno date this semesterPH2090Relativität, Teilchen und FelderNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn the foundations of special relativity and the field theory from the Lagrangian density to quantization. In the end you can quantize free and interacting fields, derive Feynman diagrams and rules, and calculate simple cross sections and decay rates.10 ECTSno date this semesterPH2040Schwach wechselwirkende TeilchenNo ratings for this module yet.Physics Special Courses and Theory CourseYou engage with weakly interacting particles, in particular with the Fermi theory of the weak interaction and the properties of neutrinos. In the end you can explain fundamental concepts of neutrino masses, neutrino oscillations and models for generating neutrino masses, and classify selected advanced topics.5 ECTSno date this semesterPH2303Signalverarbeitung mit FPGAs für DetektorenNo ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn the structure and operation of FPGAs and how to realize projects for detectors with them. You acquire practical skills in creating FPGA projects and in programming with VHDL. In the end you will be able to independently design simple FPGA designs and implement them in VHDL.5 ECTSno date this semesterPH2101Skaleneffekte, kritische Phänomene und die Renormierungsgruppe in Statistischer PhysikNo ratings for this module yet.Physics Special Courses and Theory CourseThe module covers scaling effects, critical phenomena, and the renormalization group in statistical physics. You will learn how approximations and concepts of the renormalization group explain the behavior of systems near phase transitions and how scaling laws and universality classes are derived.10 ECTSno date this semesterPH2292Spin-QubitsNo ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn the fundamentals of spin qubits and will be able to answer typical comprehension questions and perform example calculations on the concepts covered at the end. You will practice with tasks that illustrate typical problem statements of the module exam.5 ECTSno date this semesterPH2307SpinelektronikNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn physical fundamentals and applications of spintronics, in particular magnetoresistive effects (AMR, CMR, GMR, TMR, EMR), spin injection in semiconductors and spin-dependent devices. In the end you will be able to explain these effects, compare them, name relevant material parameters, perform simple transport and tunnel calculations, and analyze applications such as sensors, read heads and MRAM.5 ECTSno date this semesterPH2034Statistische Physik im Nicht-GleichgewichtNo ratings for this module yet.Physics Special Courses and Theory CourseThe module covers the theory of non-equilibrium statistical physics. You will learn fundamental equations of motion, methods for their solution, relationships between response and correlation functions, as well as scaling solutions for transport coefficients and far-from-equilibrium spectra. In the end you will be able to apply these concepts and formulate central theorems for time-periodic (Floquet) systems with respect to the quasienergy spectrum.10 ECTSno date this semesterPH2229Sternaufbau und SternentwicklungNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the physical foundations of the structure and evolution of stars — from the equations of stellar structure to energy generation and energy transport, up to the evolutionary stages and end states. You will also learn how stars serve as laboratories for fundamental physics and as tools in cosmology and galactic chemistry.5 ECTSno date this semesterPH2168StreuamplitudenNo ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn modern methods for the calculation of scattering amplitudes in particle physics, from spinor-helicity formalism over on-shell recursion to techniques for loop amplitudes. In the end you will be able to apply on-shell methods to tree- and one-loop amplitudes and understand the fundamentals of modern multi-loop procedures as well as the underlying special functions.10 ECTSno date this semesterNAT3065Streuamplituden in der QuantenfeldtheorieNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn how scattering amplitudes are calculated and analyzed in quantum field theory. In the end you can calculate example tree-level amplitudes and discuss fundamental properties of one-loop Feynman integrals.5 ECTSno date this semesterPH2316Strukturaufklärung, Bauprinzipien und Synthese kristalliner Materialien in zwei und drei DimensionenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn how crystalline materials are structurally elucidated and grown in two and three dimensions. The module conveys fundamentals of crystallography, diffraction and symmetry as well as methods for crystal growth and synthesis of new organic crystals. At the end you will be able to determine crystal systems and space groups, interpret diffraction data and classify basic crystal growth procedures.5 ECTSno date this semesterPH2191Strukturierte Photonische NanomaterialienNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn how the photonic environment of light emitters (e.g., atoms, molecules, quantum dots, 2D materials) can be designed so that emission rate, emission direction, and the type of generated fields (photons, plasmons, polaritons) are controlled. The focus is on structured materials at sub-wavelength scales (photonic crystals, metallic nanostructures, metamaterials) as well as quantum-confined semiconductor materials and their applications in quantum optics, optoelectronics, and photonics.5 ECTSno date this semesterPH2169SupersymmetrieNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn the fundamentals and applications of supersymmetric theories in four and higher dimensions. The module conveys the supersymmetry algebra, superfields and superspace, supersymmetric Lagrangian densities and mechanisms of supersymmetry breaking, as well as an introduction to supergravity, the MSSM and concepts of extra dimensions and Kaluza-Klein compactification. In the end you will be able to access academic literature on supersymmetric extensions of the Standard Model and understand lectures in this field.5 ECTSno date this semesterPH2250Supraleitung und Tieftemperaturphysik 2No ratings for this module yet.Physics Special Courses and Theory CourseThe module covers fundamentals and current topics of superconductivity, quantum fluids, mesoscopic solid-state systems and experimental low-temperature techniques. You will learn to understand and apply phenomena such as Bose-Einstein condensation, superfluidity of He-3/He-4, quantum interference effects in nanostructures, and methods for generating and measuring very low temperatures.5 ECTSno date this semesterPH2032Synthetische Biologie 2No ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterPH2235Table-top-Präzisionsexperimente in der fundamentalen PhysikNo ratings for this module yet.Physics Special Courses and Theory CourseYou will gain an overview of table-top precision experiments that complement large-scale facilities in addressing fundamental questions of particle and nuclear physics as well as gravitation. You will learn the physical motivation, typical measurement methods and experimental challenges, and at the end you will be able to classify the strengths, limitations and results of selected precision measurements.5 ECTSno date this semesterNAT3007Teilchenphysik an Collidern und im Hochenergie-UniversumNo ratings for this module yet.Physics Special Courses and Theory CourseYou receive an introduction to experimental particle physics at very high-energy accelerators. You will learn the construction and technology of modern colliders as well as their detector systems, understand the measurement and interaction of particles with matter, and be able to classify current results of the Standard Model as well as strategies for searching for new physics.5 ECTSno date this semesterPH2081Teilchenphysik der Dunklen MaterieNo ratings for this module yet.Physics Special Courses and Theory CourseYou engage with particle physics in the context of dark matter. In the end you can explain the competencies described in the module at the indicated level of understanding and apply them to examination examples.10 ECTSno date this semesterNAT3012Teilchenphysik mit natürlichen Quellen und BeschleunigernNo ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to experimental astro-particle and particle physics with a view to linking it to cosmology. In the end you will understand how particle physics and the early Universe are connected, know important detectors and measurement methods, and be able to classify findings on neutrinos, dark matter, and candidates such as axions or WIMPs.5 ECTSno date this semesterNAT3027Tests des Standardmodells der Teilchenphysik 1No ratings for this module yet.Physics Special Courses and Theory CourseYou gain an in-depth understanding of the Standard Model of particle physics: fundamentals of quantum field theory, gauge symmetries and interactions, the Higgs mechanism, as well as perturbation theory and Feynman diagrams. In the end you will be able to analyze theory and experimental tests of the Standard Model and assess limits and possible extensions.5 ECTSno date this semesterPH2044Tests des Standardmodells der Teilchenphysik 2No ratings for this module yet.Physics Special Courses and Theory CourseYou gain an in-depth understanding of the Standard Model of particle physics and its experimental tests. You will learn how theory and experiment are linked (e.g., perturbation theory, Feynman diagrams), how to interpret current precision measurements and LHC results, and to understand search strategies for phenomena beyond the Standard Model.5 ECTSno date this semesterPH2045Theoretische BiophysikNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterPH2017Theoretische TeilchenphysikNo ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will receive a structured overview of the Standard Model of particle physics and central current questions of field theory and phenomenology. In the end you will be able to describe the structure and symmetries of the Standard Model, calculate standard processes with Feynman rules up to one-loop corrections, and explain fundamental aspects of neutrino physics as well as possible extensions beyond the Standard Model.10 ECTSno date this semesterPH1005Theoretische Teilchenphysik im frühen UniversumNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterPH2298Theorie der Supraleitung in QuantenmaterialienNo ratings for this module yet.Physics Special Courses and Theory CourseYou are dealing with unconventional superconductivity. By the end you will be able to exemplarily apply and explain the competencies described in the learning objectives at least at the indicated level of understanding.5 ECTSno date this semesterNAT3016Theorie stochastischer ProzesseNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn the theory of stochastic processes and methods for their analysis. Using physical examples (predominantly from biophysics) you will acquire the tools to formulate, solve, and perform simple simulations of Master equations, Fokker-Planck, and Langevin equations, and to apply basic principles of stochastic thermodynamics.10 ECTSno date this semesterPH1006Topologie und neue Arten der Ordnung in der Physik der kondensierten MaterieNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn theoretical concepts and experimental signatures of topological phases in solid-state physics. In the end you will be able to distinguish phases by symmetry and topology, derive topological invariants from band structures, and understand important examples such as quantum Hall states, topological insulators and metals, as well as topological superconductors.10 ECTSno date this semesterPH2246Topologische Elektronik und MaterialienNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterPH2283Turbulenz in neutralen Fluiden und PlasmenNo ratings for this module yet.Physics Special Courses and Theory CourseYou will receive an introduction to turbulence research in neutral fluids and in magnetized plasmas. You will learn fundamental concepts from chaos through linear instabilities to fully developed two- and three-dimensional turbulence and will be able to name characteristic differences and apply fundamental analysis methods to time series at the end.5 ECTSno date this semesterPH2175Ultrakalte Quantengase 1No ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will learn the interplay between atoms and light, methods for cooling and trapping ultracold atoms, and the fundamentals of Bose-Einstein condensation of an ideal gas. In the end you will be able to apply different models of atom-light interaction, analyze cooling and trapping methods with respect to their limits, and understand the basics of BEC.5 ECTSno date this semesterPH2124Ultrakalte Quantengase 2No ratings for this module yet.Physics Special Courses and Theory CourseYou engage with physical properties and theoretical models of ultracold Bose-Einstein condensates, from ideal to strongly interacting regimes. In the end you will be able to explain fundamental properties of the ideal BEC, apply models for weakly interacting condensates, and understand effects in the strongly interacting regime.5 ECTSno date this semesterPH2125Ultrarelativistische Schwerionenstöße: Die Physik des Quark-Gluon-PlasmasNo ratings for this module yet.Physics Special Courses and Theory CourseIn this module you will explore the physics of the quark-gluon plasma, how it is produced in ultrarelativistic heavy-ion collisions. By the end you will be able to describe the structure of the QCD phase diagram, the thermodynamic fundamentals of the QGP, typical formation and detection signals as well as experimental methods and current research perspectives.5 ECTSno date this semesterPH2190Vielteilchenverschränkung und ihre AnwendungenNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn fundamental concepts and applications of many-body entanglement. By the end you will be able to apply and explain the competencies described in the learning goals at the corresponding level of insight.10 ECTSno date this semesterNAT3024Von Biofluiden zur BionikNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn the physical fundamentals of flows in networks — from biological vascular systems to technical applications such as solar cells. In the end you will be able to explain how flow networks work, what optimization goals and control mechanisms exist, and how self-organization in such networks can occur.5 ECTSno date this semesterPH2311Von Quarks zu Hadronen: nieder- und mittelenergetischer BereichNo ratings for this module yet.Physics Special Courses and Theory CourseYou will become familiar with the development of research on strongly interacting particles from early nuclear power experiments to modern investigations of the strong interaction in the low- and medium-energy range. The focus is on experimental methods, the role of symmetries (in particular chiral symmetry), and the treatment of resonances. In the end you will be able to understand the relevant processes and measurements and to actively participate in corresponding experiments as well as carry out estimates for cross sections.5 ECTSno date this semesterPH2214Von Quarks zu Hadronen: Tiefunelastische Streuung und PartonmodellNo ratings for this module yet.Physics Special Courses and Theory CourseYou learn how the quark hypothesis and the parton model explain observations in deep inelastic scattering. Starting from quarks as Dirac particles, structure and reaction cross sections as well as quark distribution functions are treated; finally you gain insight into newer experiments on spin structure and correlations of quarks.5 ECTSno date this semesterPH2202Zweidimensionale MaterialienNo ratings for this module yet.Physics Special Courses and Theory CourseYou will learn properties, fabrication, characterization and applications of two-dimensional (2D) materials. At the end you will be able to classify different 2D material classes, select suitable preparation and analysis techniques, and interpret central physical properties (e.g. phonons, excitons, Raman and photoluminescence signatures).5 ECTSno date this semesterPH2172
23 more modules match, but they are taught in German. Show them(Effektive) Quantenfeldtheorie in gekrümmten RaumzeitenNo ratings for this module yet.Physics Special Courses and Theory CourseDu beschäftigst dich mit Quantenfeldtheorie in gekrümmten Raumzeiten. Am Ende kannst Du Quanteneffekte in Gravitationsfeldern abschätzen und verstehst Phänomene wie die Hawking-Strahlung sowie die dazugehörigen Beispielrechnungen.10 ECTSno date this semesterNAT3047Einführung in die FPGA-ProgrammierungNo ratings for this module yet.Physics Special Courses and Theory CourseDu lernst die Grundlagen der FPGA-Programmierung: digitales Design, Programmierung in VHDL, erste Anwendung von XILINX-Designwerkzeugen (z. B. Vivado) und Grundlagen der digitalen Simulation und Verifizierung. Am Ende kannst du einfache digitale Schaltungen in VHDL entwerfen, mit XILINX-Tools arbeiten und Simulationen zur Verifikation nutzen.5 ECTSno date this semesterNAT3028Einführung in die KristallographieNo ratings for this module yet.Physics Special Courses and Theory CourseDu erhältst eine Einführung in die Beschreibung, Struktur und Eigenschaften kristalliner Festkörper. Du lernst Symmetrie, Raumgruppen und Kristallchemie kennen, erfährst typische Abweichungen vom idealen Kristallbau sowie experimentelle Methoden (z. B. Röntgen- und Neutronenbeugung) zur Bestimmung der Realstruktur und die Verbindung zwischen Kristallsymmetrie und makroskopischen Eigenschaften.5 ECTSno date this semesterPH2295Fortgeschrittene Themen in der QFT: von nicht-perturbativen Phänomenen zu GravitationNo ratings for this module yet.Physics Special Courses and Theory CourseDu beschäftigst dich mit nicht-perturbativen Effekten in der Quantenfeldtheorie (Solitonen, Instantons, Anomalien) und mit QFT in gekrümmten Raumzeiten (Unruh-, Hawking-Effekt, Entropie, Grundlagen der Quantenfeldtheorie in der Inflation). Am Ende kannst du die relevanten nicht-perturbativen Phänomene beschreiben und Modelle für Teilaspekte der QFT in starken Gravitationsfeldern aufbauen.10 ECTSno date this semesterNAT3005Grundlagen des "Machine Learning" für die PhysikNo ratings for this module yet.Physics Special Courses and Theory CourseDu lernst grundlegende Konzepte und Methoden des Machine Learning mit Fokus auf Anwendungen in der Physik. Am Ende kannst du grundlegende Klassifikations- und Regressionsmodelle sowie Ensembleverfahren verstehen, einschätzen und einfache Beispielrechnungen dazu durchführen.5 ECTSruns this semesterNAT3009Individuelles Anerkennungsmodul SpezialfachNo ratings for this module yet.Physics Special Courses and Theory Courseno date this semesterPH20001Individuelles Anerkennungsmodul SpezialfachNo ratings for this module yet.Physics Special Courses and Theory Courseno date this semesterPH20002Individuelles Anerkennungsmodul Spezialfach AEPNo ratings for this module yet.Physics Special Courses and Theory Courseno date this semesterPH20003Individuelles Anerkennungsmodul Spezialfach AEPNo ratings for this module yet.Physics Special Courses and Theory Courseno date this semesterPH20004Individuelles Anerkennungsmodul Spezialfach AEPNo ratings for this module yet.Physics Special Courses and Theory Courseno date this semesterPH20005Individuelles Anerkennungsmodul Spezialfach AEPNo ratings for this module yet.Physics Special Courses and Theory Courseno date this semesterPH20006Modernes Deep Learning in der PhysikNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterNAT3008Numerische Methoden zur DatenanalyseNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterPH2222Physik des StandardmodellsNo ratings for this module yet.Physics Special Courses and Theory CourseIn diesem Modul lernst Du, wie Streu- und Zerfallsprozesse im Rahmen des Standardmodells aus Feynman-Diagrammen berechnet werden. Du erwirbst Fertigkeiten in der Auswertung von Spin- und Polarisations­summen, der Behandlung von Strahlungskorrekturen in der QED sowie in grundsätzlichen Verfahren wie dimensionaler Regularisierung und dem Partonmodell für tiefinelastische Streuung.3 ECTSno date this semesterNAT3061Quantenoptik 1No ratings for this module yet.Physics Special Courses and Theory CourseDu lernst die grundlegenden Konzepte der Quantenoptik mit Schwerpunkt auf Licht–Materie-Wechselwirkung unter kohärenten und dekoherenten Bedingungen. Am Ende kannst du Vorgänge wie Rabi-Oszillationen, selbstinduzierte Transparenz und Solitonenausbreitung sowie grundlegende Laserfunktionsprinzipien und spektroskopische Methoden beschreiben und qualitativ erklären.5 ECTSno date this semesterPH2025Quantenoptik 2No ratings for this module yet.Physics Special Courses and Theory CourseDu beschäftigst dich mit zeitlichen Eigenschaften von Lichtpulsen, mit grundlegenden Aspekten nichtklassischer Photonenstatistik sowie mit linearen und nichtlinearen Strahleigenschaften in Laserresonatoren. Am Ende kannst du Methoden zur Erzeugung kurzer und ultrakurzer Pulse erklären, Rauscheigenschaften von Licht einordnen sowie grundlegende nichtlineare Optik-Effekte und ihre experimentellen Umsetzung beschreiben.5 ECTSno date this semesterPH2026Quantitative Röntgenbildgebung - von Bildern zu material-spezifischen DatenNo ratings for this module yet.Physics Special Courses and Theory CourseIn diesem Modul lernst du Methoden der quantitativen Röntgenbildgebung kennen — sowohl im Absorptions- als auch im Phasenkontrastkanal. Am Ende kannst du verschiedene Bildgebungsverfahren und ihre gemessenen Signale charakterisieren sowie geeignete Ansätze zur Gewinnung materialspezifischer Bilder für gegebene Messsysteme auswählen und deren Grenzen einschätzen.5 ECTSruns this semesterNAT3026Stochastische nichtlineare SystemeNo ratings for this module yet.Physics Special Courses and Theory CourseDu lernst, wie man nichtlineare dynamische Systeme mit stochastischen Effekten beschreibt und analysiert. Im Modul werden Theorie und Methoden zur Musterbildung in räumlich ausgedehnten Systemen sowie Mechanismen stochastisch induzierter Symmetriebrüche und Populationendynamik behandelt. Am Ende kannst du grundlegende Konzepte anwenden und aktuelle Werkzeuge zur Analyse nichtlinearer stochastischer Systeme nutzen.5 ECTSno date this semesterPH2279Teilchenphysik mit Neutronen 1No ratings for this module yet.Physics Special Courses and Theory CourseDu erhältst einen kompakten Überblick über die Teilchenphysik mit Neutronen: Wechselwirkungen von Neutronen mit Materie, Quellen (inkl. kalte und ultrakalte Neutronen), Instrumentierung und notwendiges Grundlagenwissen. Zudem lernst du die Rolle von Neutronen im Standardmodell und in der Astrophysik kennen sowie experimentelle Tests des Standardmodells (z. B. Lebensdauer und Zerfallsparameter des freien Neutrons). Am Ende kannst du die Grundzüge der Neutronenphysik erklären und experimentelle Methoden einschätzen.5 ECTSno date this semesterPH2066Theoretische Methoden für QCD an CollidernNo ratings for this module yet.Physics Special Courses and Theory Course5 ECTSno date this semesterNAT3003Theoretische QuantenoptikNo ratings for this module yet.Physics Special Courses and Theory CourseIn diesem Modul lernst Du die theoretischen Grundlagen zur Beschreibung quantenoptischer Wechselwirkungen zwischen Licht und Materie sowie die Behandlung offener Quantensysteme. Am Ende kannst Du typische Modelle wie den Jaynes‑Cummings‑Ansatz anwenden, grundlegende Effekte (z. B. Rabi‑Oszillationen, Laser‑Kühlung, Photonenkorrelationen) beschreiben und einfache numerische Simulationen solcher Systeme durchführen.10 ECTSno date this semesterNAT3013Theorie offener QuantensystemeNo ratings for this module yet.Physics Special Courses and Theory CourseIn diesem Modul lernst Du die Theorie offener Quantensysteme kennen. Du kannst am Ende grundlegende Beschreibungsgleichungen für Systeme, die mit einer Umgebung wechselwirken, angeben und wichtige Unterschiede zwischen stochastischen Gleichungsformen erklären.5 ECTSruns this semesterNAT3023Vielteilchenphysik mit ultrakalten AtomenNo ratings for this module yet.Physics Special Courses and Theory CourseDas Modul führt in die Grundkonzepte der Vielteilchenphysik am Beispiel ultrakalter Gase ein. Du lernst die wichtigsten theoretischen Modelle und experimentellen Konzepte für Bose-Einstein-Kondensation, optische Gitter sowie ultrakalte Fermionen kennen und kannst diese zur Beschreibung relevanter Phänomene anwenden.10 ECTSno date this semesterPH2287