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Covers the Gupta-Bleuler quantization method in Quantum Field Theory, focusing on redundancy in the electromagnetic field and the recovery of Maxwell equations.
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Explores quantum sensing, parameter estimation, noise processes, and photon entanglement.
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.
Large N Expansion: Vector Models
Explores the Large N expansion in vector models, focusing on matrix models, gauge theories, and the Hooft coupling.
Discrete Symmetries: P and T
Covers the introduction to Parity (P) and Time Reversal (T) symmetries in Quantum Mechanics.
Moments in metals: Kondo effect, Stoner model, and sd interaction
Explores the Kondo effect, Stoner model, and sd interaction in metals, focusing on magnetic atoms and impurities.
Statistical Thermodynamics: Microcanonical and Canonical Ensembles
Explores the microcanonical and canonical ensembles, historical contributions, macrostates, microstates, and particle arrangements in statistical thermodynamics.
Quantum Chemistry Fundamentals
Introduces the fundamentals of quantum chemistry, including Hartree-Fock wavefunctions and density functional theory.
Quantum Field Theory: Dirac Hamiltonian
Covers the quantization of the Dirac field and its Hamiltonian properties.
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Explores quantum chemical electronic structure methods, including basis sets and the Hartree-Fock method.

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