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Ground-State Cooling in Cavity Optomechanics with and without Rotating-Wave Approximation

机译:具有旋转波近似的空腔光学力学中的地线冷却

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We investigate the cooling of mechanical resonator in the quantum regime by using the effective master equations, which can be applicable with and without rotating-wave approximation (RWA) in linear regime. We show that the improved lower bound for the final occupancy of the mechanical resonator can be attained by inclusion of the anti-resonance terms in the resolved sideband (RSB) regime. We establish that the self squeezing cavity modes can enhance the cooling in optomechanical cavity.
机译:我们通过使用有效的主方程,研究了量子制度中机械谐振器的冷却,这可以在线性状态适用,无需旋转波近似(RWA)。我们表明,通过在分辨的边带(RSB)制度中包含防谐振术,可以实现机械谐振器的最终占用的改进的下限。我们建立了自挤压腔模式可以增强光学力学腔中的冷却。

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