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General Relativity (GR) / Quantum Field Theory (QFT)

In the module Quantum Field Theory / General Theory of Relativity you will deepen previous knowledge and specialize in astrophysics, acquire and train new skills. This includes 

  •  to master the fundamental concepts of quantum field theory and/or general relativity,
  • to apply the basic concepts to investigate and predict the behavior of simple systems,
  • to work on and solve simple model problems independently and justify their approach,
  • interdisciplinary skills through the expanded range of subjects including related topics in neighboring areas such as astrophysics, particle physics and physics-related mathematics eligible as specialized courses.

The module prepares for topics of current research in in quantum field theory and/or general relativity and towards their own research activity within the master thesis. The module is subdivided into a core courses, specialized courses, an advanced seminar, a research internship and contains Lectures, problem classes, seminar (optional), research internship (guidance to independent research; optional).

You can find the courses on Klips.

List of lectures which has been accepted in earlier semesters

Lecture Title / TopicDescriptionHPWCPSemester
Core Courses
Specialized Courses
Seminars
Relativity and Cosmology IDetail4+29W
Relativity and Cosmology IIDetail4+29S
Quantum Field Theory IDetail4+29S
Quantum Field Theory IIDetail4+29W
Quantum Aspects of Gravity: Quantum Gravity,
The Early Universe, QFT in Curved Spacetime,
Foundations of Quantum Theory, Quantum Black Holes
Detail23W/S
Particle- and Astrophysics: Advanced Astrophysics, 
Group Theory, Theoretical Particle Physics, Advanced
Theoretical Physics, Theoretical Astroparticle Physics,
Superstring Theory, Supersymmetry
Detail3+16W/S
Mathematics: Topology, Differential Geometry, 
Theory of Groups, Functional Analysis, 
Geometry and Analysis on Supermanifolds and
Lie Supergroups
Detail2/4+23/6W/S
Geometry in PhysicsDetail4+29S
Advanced seminar on current topics in GR/QFT 23