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Lecture
Theory of Open Quantum Systems
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Related lectures (32)
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Quantum and Nanocomputing
Covers quantum wire analysis, transmission function, and tunneling in dots.
Quantum Chemistry
Covers eigenvalues, eigenfunctions, Hermitian operators, and the measurement of observables in quantum chemistry.
Matrix to Density Operator
Explains the transformation from a matrix to the density operator in quantum physics.
Quantum Chemistry: Postulates and Harmonic Oscillator
Explores the historical perspective and postulates of quantum mechanics, focusing on the harmonic oscillator and approximation methods.
Density Operator: Matrix to the System State
Explores density operator matrix transformation in quantum physics and the implications of measuring the system, leading to state collapse.
Quantum Jump: Theory and Algorithms
Explores the theory of quantum jumps in open quantum systems and their simulation.
Quantum Chemistry
Covers quantum states, symmetries, fermions, and variational principles in quantum chemistry.
Quantum Chemistry: Eigenfunctions and Hermitian Operators
Discusses eigenfunctions of Hermitian operators in quantum chemistry and the quantization of energy levels.
Quantum Channels: Lecture 08 - Part 2
Covers the evolution of quantum systems and the dynamics of open quantum systems.
Quantum Chemistry: Eigenfunctions and Operators
Explores eigenfunctions and operators in quantum chemistry, emphasizing their significance in understanding bound states.