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Foundations of Quantum Mechanics:
Lecture 20
3.5 Optomechanical equations of motion (classical limit). 3.6 Linearized dynamics. Effective optomechanical damping rate and effective light-induced frequency shift (optical spring effect).
Foundations of Quantum Mechanics:
Lecture 19
5.3 Nelsons Stochastic Quantization (drift and diffusion)
T6. Fluctuation spectrum and fluctuation-dissipation theorem. Displacement spectrum. Wiener-Khinchin theorem. Fluctuation-dissipation theorem. Application to the mechanical harmonic oscillator in thermal equilibrium.
Foundations of Quantum Mechanics:
Lecture 18
14.6.2013
5. Interpretations of Quantum Mechanics;
5.1 Kopenhagen interpretation;
5.2 Bohm s pilot wave theory
3. Optomechanics. 3.1 Introduction. 3.2 Mechanical effects of light. 3.3 Generic model of an optomechanical system. 3.4 Elementary physics (classical).
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These lectures deal with the modern topic of quantum optical phenomena in nanophysics. During the past decade, a variety of solid state nanosystems have been realized which can be described using…

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