Quantum Physics IExplores eigenvalues, ladder operations, and quantum number values in quantum physics.
Asymptotic States and S-matrixCovers the concept of asymptotic states and S-matrix in quantum field theory, focusing on the evolution of wave packets and the scattering states.
The Weak InteractionExplores parity, intrinsic particle parities, V-A structure, chiral and helicity properties, and evidence for the V-A nature of weak interactions.
Spin Angular MomentumExplores spin as angular momentum, its operators, commutation relations, and eigenstates in quantum mechanics.
QED: Gauge TheoriesCovers Quantum Electrodynamics (QED), instantons, Feynman rules, and gauge theories in modern particle physics.
Eigenstate Thermalization HypothesisExplores the Eigenstate Thermalization Hypothesis in quantum systems, emphasizing the random matrix theory and the behavior of observables in thermal equilibrium.
The Dirac equation and spinExplores the interpretation of energy degeneracy, non-commutativity, spin operators, helicity, and discrete symmetries in the Dirac equation.
Symmetries: C/P/T symmetriesCovers the symmetries of empty space, including Parity, Time reversal, and charge conjugation, with examples from Quantum Electrodynamics.
Quantum Physics ICovers angular momentum in quantum physics, creation operators, spin, and matrix elements.