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Photonic Quantum Technologies

CIT4430005Examination Performance5 ECTSEnglishWintersemester/SommersemesterDepartment Electrical Engineering
AI-edited module sheet. Based on the TUMonline module description, edited for readability.Original in TUMonline

What it is about

You learn the basics of photonic quantum technologies: how photons are used as information carriers over long distances and how semiconductor elements generate quantum light, realize qubits and route or couple photons. In the end you can apply the fundamentals of single- and two-qubit states as well as light–matter interaction and assess various system-related advantages and disadvantages.

What you will be able to do

  • Understanding of single qubits, two-qubit states and quantum entanglement
  • Applying this understanding to various quantum systems
  • Understanding coherent light–matter interaction and cavity QED
  • Analysis of quantum gates and device performance
  • Assessment of different optoelectronic semiconductor quantum systems
  • Basic understanding generation, manipulation and detection of quantum light
  • Understanding and applying quantum communication protocols

What the module consists of

  • VorlesungPresentation of thematic content with cross-references to elucidate universal concepts
  • ÜbungDeepening through exercise problems and discussion of current scientific publications

Teaching method

  • Thematisch strukturierte Vorlesungillustrates connections and universal concepts of photonic quantum technologies
  • Wissenschaftliche Diskussionenpromote analytical-physical thinking among students
  • Übungen mit Aufgaben und Paper‑Diskussiondeepen understanding and application of the learning content

Dates

LecturePhotonic Quantum Technologies

  • Thu15:00–16:3003.5901.022, Seminarraum (5901.03.022)
    14× · 15.10.–04.02.
    • 15.10.
    • 22.10.
    • 29.10.
    • 05.11.
    • 12.11.
    • 19.11.
    • 26.11.
    • 10.12.
    • 17.12.
    • 07.01.
    • 14.01.
    • 21.01.
    • 28.01.
    • 04.02.

ExercisePhotonic Quantum Technologies

  • Thu16:30–18:0003.5901.022, Seminarraum (5901.03.022)
    14× · 15.10.–04.02.
    • 15.10.
    • 22.10.
    • 29.10.
    • 05.11.
    • 12.11.
    • 19.11.
    • 26.11.
    • 10.12.
    • 17.12.
    • 07.01.
    • 14.01.
    • 21.01.
    • 28.01.
    • 04.02.

From the current semester, not binding.

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Official page in TUMonline · Details are not binding.