Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Quizes
Exercises
Publications
Startups
Units
Show all results for
Home
Lecture
Chirality & Helicity: Understanding QFT
Graph Chatbot
Related lectures (26)
Spinorial Fields: Lorentz Group Representation
Covers the most general representation of Lorentz group on spinorial fields.
Vector Fields and Lorentz Tensors: Representation Theory
Covers the transformation properties of vector fields and their representation in Lorentz tensors.
Quantum Field Theory: Lecture 9
Covers relativistically normalized states, Lorentz invariance, and scalar field representations in quantum field theory.
EM Field: Discrete Symmetries
Covers EM Field and Discrete Symmetries, emphasizing the importance of symmetries in quantum field theory.
Quantization of Spin in QFT
Covers the quantization of spin in Quantum Field Theory, focusing on induced representations and unitary irreps.
The Dirac Equation
Explores the development and implications of the Dirac equation, including its solutions, the Dirac sea concept, and the discovery of the anti-electron.
Discrete Symmetries: Asymptotic States and S-matrix
Covers the concept of discrete symmetries, focusing on the introduction to asymptotic states and S-matrix.
Lie Algebra of Lorentz Group
Covers the Lie algebra of the Lorentz group, focusing on boosts, rotations, and transformations.
Chirality and Eliticity in Dirac Equation
Explores chirality, elicity, and Lorentz invariance in the Dirac equation.
Quantum Fluids: Cross Section & Lifetime
Covers the concepts of cross section and lifetime in quantum fluids, focusing on transition and differential probabilities.
Dirac Equation: Properties and Solutions
Explores the Dirac equation properties, solutions, antiparticles, and spin concepts.
Gauge Theories And Modern Particle Physics
Covers gauge theories, modern particle physics, the standard model, and field content.
Spinor Theory
Covers the fundamentals of spinor theory and its applications in quantum mechanics and particle physics.
Relativistic Quantum Mechanics
Explores special relativity, the Schrödinger and Dirac equations, antiparticles, and fermions' shortcomings.
Quantum Theory: Lorentz Transformation
Explores the Lorentz transformation in Quantum Theory, emphasizing Fock space representation and momentum concepts.
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: Gauge Symmetries
Explores gauge symmetries in quantum field theory, emphasizing invariance under transformations and the role of ghost fields.
Quantum Field Theory: Poincaré Group
Explores Einsteinian relativity, the Lorentz group, and Poincaré transformations, emphasizing proper and non-orthochronous components.
Representations of SU(2): Symmetries and Transformations
Covers the representations of SU(2) and their transformations in quantum mechanics.
The Dirac equation and spin
Explores the interpretation of energy degeneracy, non-commutativity, spin operators, helicity, and discrete symmetries in the Dirac equation.
Previous
Page 1 of 2
Next