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Lecture
Path Integral: Fundamentals
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Related lectures (31)
Path Integral Quantum Mechanics
Explores real-time path integrals, time-correlation functions, and quantum dynamics approximations.
Quantum Mechanics: Harmonic Oscillator
Introduces coherent states, the Ehrenfest theorem, and path integrals in quantum mechanics.
Gelfand-Yaglom Formula
Explores the Gelfand-Yaglom formula and time-ordered products in the context of the path integral representation of the propagator for a time-dependent harmonic oscillator.
Principle of Least Action
Covers the principle of least action, Euler-Lagrange equations, Lagrange multipliers, and variational calculus.
Path Integral: Free Particle
Covers the path integral method with a focus on a free particle example.
Quantum Mechanics: Operators and Eigenvalues
Covers matrix elements, operators, paths with conditions, and time evolution in quantum mechanics.
Non-linear dynamics: phenomenology, tools and methods
Explores Hamiltonian and Lagrangian formulations, canonical variables, Lie operators, and their applications in beam dynamics and nonlinear systems.
Quantum Mechanics: Path Integral Representation
Covers the path integral representation in quantum mechanics and the dynamics of systems described by Lagrangian.
Magnetostatics: Magnetic Field and Force
Covers magnetic fields, Ampère's law, and magnetic dipoles with examples and illustrations.
Relativistic Larmor Formula: Lagrangian for Electrodynamics
Covers the relativistic Larmor formula, synchrotron radiation, and Lagrangian for electrodynamics.
Instantons: Perturbation Theory and Semiclassical Approximations
Discusses instantons in quantum mechanics and their role in capturing missed effects.
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