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Related lectures (8)
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Discrete Symmetries Introduction
Introduces discrete symmetries, operators, and tetraquarks in quantum field theory.
Tetraquarks: OPE and Quark-Hadron Duality
Delves into tetraquark states in QCD, focusing on interpolating currents, large-Nc properties, and QCD sum rules.
Discrete Symmetries Introduction
Introduces the concept of discrete symmetries in Quantum Field Theory and their impact on particles and anti-particles.
Asymptotic States and S-matrix: Operators
Explores asymptotic states, S-matrix, and operators in quantum field theory, emphasizing the role of discrete symmetries and complete sets of states.
Discrete Symmetries Introduction
Covers the introduction to discrete symmetries and the violation of symmetry by weak interactions.
Particle Detection: Stable Particles and Lifetime
Explores the detection of stable particles in particle physics experiments, covering observed and unobserved particles, their lifetimes, and the impact of Lorentz boost.
The weak interactions of leptons
Delves into neutrino flavors, muon decay, LFU violation, and neutrino-quark scattering, exploring weak interactions of leptons.
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.
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