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arxiv: 1605.04749 · v2 · submitted 2016-05-16 · ❄️ cond-mat.mes-hall · quant-ph

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Floquet approach to bichromatically driven cavity optomechanical systems

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classification ❄️ cond-mat.mes-hall quant-ph
keywords fourierapproachbichromaticallycavitydrivenequationsfloquetlangevin
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We develop a Floquet approach to solve time-periodic quantum Langevin equations in steady state. We show that two-time correlation functions of system operators can be expanded in a Fourier series and that a generalized Wiener-Khinchin theorem relates the Fourier transform of their zeroth Fourier component to the measured spectrum. We apply our framework to bichromatically driven cavity optomechanical systems, a setting in which mechanical oscillators have recently been prepared in quantum-squeezed states. Our method provides an intuitive way to calculate the power spectral densities for time-periodic quantum Langevin equations in arbitrary rotating frames.

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