Skip to main content
Graph
Search
fr
|
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Practice
Publications
Startups
Units
Show all results for
Home
Lecture
Asymptotic States and S-matrix: Operators
Graph Chatbot
Related lectures (22)
Previous
Page 2 of 3
Next
Quantum Field Theory: Particle Interactions
Explores the Dirac equation, Pauli-Dirac representation, particle solutions, operators, particle types, Feynman diagrams, and quantum electrodynamics.
Quantum Field Theory: Fourier Modes
Explores Fourier modes in Quantum Field Theory, emphasizing variables transforming well under translations and the normalization of states.
Quantum Field Theory: Feynman Rules
Covers the Feynman Rules in Quantum Field Theory, focusing on the proper split of terms and the solution of paradoxes.
Introduction to Quantum Mechanics
Introduces quantum mechanics, covering S-matrix, scattering amplitudes, and optical theorem.
Magnetic Scattering: Pairwise Little Group and Pairwise Helicity
Explores magnetic scattering, focusing on pairwise little group and helicity, constructing the S-matrix and analyzing multi-particle representations.
Quantum Eigenfunctions
Covers quantum eigenfunctions and the importance of A and B commuting for the same set of eigenfunctions.
Linear Operators: Basis Transformation and Eigenvalues
Explores basis transformation, eigenvalues, and linear operators in inner product spaces, emphasizing their significance in Quantum Mechanics.
Quantum Field Theory: Fundamentals and Applications
Introduces Quantum Field Theory, covering paths to QFT, fields, weak interactions, and the Standard Model of particle Physics.
From AdS/CFT to Soft Theorems
Explores the transition from AdS/CFT to soft theorems in flat space physics, including the construction of scattering states and the application of Weinberg soft theorems.
Particle Physics: Fundamentals and Interactions
Covers the basics of particle physics, including elementary particles, forces, the Standard Model, and rare phenomena at the LHC.