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Optical phase space
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Quantum mechanics
Mathematical formulation of...
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Related lectures (31)
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Path Integral Representation of Propagators
Covers the path integral representation of propagators for free particles and harmonic oscillators.
Spectral Density: Semiclassical Approximation
Covers the semiclassical approximation for spectral density and the Bohr-Sommerfeld quantization condition.
Quantum Dynamics: Exact Methods and Applications
Covers exact and semiclassical quantum dynamics, including Schrödinger's equation and molecular interactions.
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 Physics IV: Path Integral
Covers the concept of path integral in quantum physics, focusing on phase space path integral and real space path integral.
Quantum Mechanics: Stochastic Aspects
Delves into the statistical aspects of quantum mechanics and its relation to stochastic processes, focusing on quantum optics and Markov jump processes.
Wigner's Theorem and Temporal Inversion Operator
Explores Wigner's Theorem and temporal inversion operator in quantum mechanics.
Canonical Transformations in Hamiltonian Mechanics
Explores canonical transformations in Hamiltonian mechanics, emphasizing variable separation in the Hamilton-Jacobi equation.
Chaos and Sensitivity in Double Pendulum
Delves into chaos and sensitivity in the double pendulum system, exploring unpredictability and exponential divergence of trajectories.
Particle decay rates
Explores particle decay rates through Fermi's Golden Rule and perturbation theory.
Small Scale Stability: Gradient Systems
Explores small scale stability in gradient systems, analyzing trajectories and attractors in phase space.
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