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Numerical Analysis for High-dimensional Quantum Dynamics

CIT413027Elective Modules6 ECTSEnglishUnregelmäßigDepartment Mathematics
AI-edited module sheet. Based on the TUMonline module description, edited for readability.Original in TUMonline

What it is about

You learn mathematical foundations and numerical methods for simulating quantum-dynamical systems in high dimensions. In the module you treat grid-based methods, the Truncated-Wigner Approximation, the time-dependent variational principle methodology, and the Gaussian wave packet approximation. In the end you will be able to understand and apply central approximations in phase-space formulation and methods from the time-dependent variational principle.

What you will be able to do

  • Understand mathematical foundations of quantum dynamics
  • Apply grid-based numerical methods
  • Analyze the Truncated-Wigner Approximation
  • Apply the time-dependent variational principle
  • Apply Gaussian wave packet approximation
  • Evaluate approximations in classical phase space

What the module consists of

  • VorlesungPresentation of the content with examples and discussion to convey the theory
  • Übung/Practice sessionsDeepening the content through worksheets, initially guided, later increasingly autonomous

Teaching method

  • Lecture with examplesto present the concepts and motivate independent engagement
  • Discussion with studentsto clarify and deepen the content
  • Practice sessions with exercises and solutionsto practice methods and to self-check learning progress
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Official page in TUMonline · Details are not binding.