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Lecture
Quantum Field Theory: Lecture 9
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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: Fourier Modes
Explores Fourier modes in Quantum Field Theory, emphasizing variables transforming well under translations and the normalization of states.
Chirality & Helicity: Understanding QFT
Explores chirality, helicity, and spinors in Quantum Field Theory, focusing on normalization and completeness relations.
Quantum Theory: Lorentz Transformation
Explores the Lorentz transformation in Quantum Theory, emphasizing Fock space representation and momentum concepts.
EM Field: Discrete Symmetries
Covers EM Field and Discrete Symmetries, emphasizing the importance of symmetries in quantum field theory.
Lie Groups: Representations and Transformations
Explores Lie groups, scalar fields, and vector spaces transformations.
Quantum Mechanics: Non-Relativistic Qu
Explores the applicability of non-relativistic quantum mechanics and its relation to special relativity.
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.
Quantum Field Theory: Normalization and Lorentz Invariance
Explores the relativistic normalization of states in quantum field theory.