Lecture

Time-Independent Perturbation Theory: Degenerate Case

Related lectures (62)
Time-Independent Perturbation Theory: Degenerate Case
Covers the theory of time-independent perturbations in the degenerate case.
Perturbation Theory: Time-Dependent Disturbance Theory
Explores time-dependent perturbations in quantum physics and their solutions under various disturbance scenarios.
The Schur Lemma: Physical Interpretation
Explores the physical interpretation of the Schur lemma in quantum physics.
Group Representations Theory Application Overview
Covers the application of group representations theory in quantum physics.
Projectors on Invariant Subspaces
Covers projectors on invariant subspaces in quantum physics and their applications.
Group Repetition Theory: Character Representations
Explores character representations in group repetition theory, discussing irreducibility, equivalence, and associated values.
Density Operators in Quantum Physics II
Explores density operators in quantum physics, emphasizing their role in describing quantum system states.
Second Order Perturbation Transition Probabilities
Explores second-order perturbation theory in quantum physics for transition probabilities and rates.
Hartree-Fock Equations for N Fermions
Discusses the minimization of the Hartree-Fock functional for N fermions and the variational principle in quantum physics.
Quantum Bosons: Second Quantification
Explores perturbation theory, proper states, undegenerated states, and problem-solving in quantum bosons.

Graph Chatbot

Chat with Graph Search

Ask any question about EPFL courses, lectures, exercises, research, news, etc. or try the example questions below.

DISCLAIMER: The Graph Chatbot is not programmed to provide explicit or categorical answers to your questions. Rather, it transforms your questions into API requests that are distributed across the various IT services officially administered by EPFL. Its purpose is solely to collect and recommend relevant references to content that you can explore to help you answer your questions.