SS 2027 WS 2026
SS 2026
SS 2025 WS 2025
Department of Chemistry
open physics
KVL / Klausuren / MAP 1st HS: 13.04  2nd HS: 01.06  sem.br.: 20.07  begin WS: 10.10

4020260126 Introduction to Many-Body Physics      VVZ  

VL
Tue 15-17
weekly ZGW 2 1.121 (36) Nakib Haider Protik
Fri 15-16
weekly ZGW 2 1.121 (36)
UE
Fri 16-17
weekly ZGW 2 1.121 (36) Nakib Haider Protik

Digital- & Präsenz-basierter Kurs

classroom language
EN
aims
By the end of the course, students will develop a deep understanding of the fundamentals of Green's functions techniques applied to solid state systems. They will develop a practical knowledge of Feynman diagrams which they will be able to apply to their own field of research.
requirements
Advanced Quantum Mechanics
structure / topics / contents
- Second quantization/field operators
- Time evolution pictures
- Zero temperature formalism
- Finite temperature formalism
- Impurity scattering
- Electron gas
- Phonons and electron-phonon coupling
- Selected topics such as anharmonicity, superconductivity, etc.
assigned modules
P25.2.c
amount, credit points; Exam / major course assessment
4 SWS, 6 SP/ECTS (Arbeitsanteil im Modul für diese Lehrveranstaltung, nicht verbindlich)
Graded home works and a term paper accompanied by an oral exam.
contact
Nakib Haider Protik, Zum Grossen Windkanal 2, Raum 3.261
literature
Henrik Bruus and Karsten Flensberg . Many-Body Quantum Theory in Condensed Matter Physics : An Introduction. Oxford University Press
Radi Jishi. Feynman Diagram Techniques in Condensed Matter Physics. Cambdrige University Press
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