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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Self-cooling of a movable mirror to the ground state using radiation pressure
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Self-cooling of a movable mirror to the ground state using radiation pressure

机译:利用辐射压力将可移动反射镜自冷至基态

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摘要

We show that one can cool a micromechanical oscillator to its quantum ground state using radiation pressure in an appropriately detuned cavity (self-cooling). From a theory based on Heisenberg-Langevin equations we find that optimal self-cooling occurs in the good cavity regime, when the cavity bandwidth is smaller than the mechanical frequency, but still larger than the effective mechanical damping. In this case the intracavity field and the vibrational mechanical mode coherently exchange their fluctuations, thus reducing the mirror temperature by several orders of magnitude. We also present dynamical calculations which show how to access the mirror temperature from a homodyne measurement of the fluctuations of the reflected field.
机译:我们表明,可以使用适当失谐的腔中的辐射压力将微机械振荡器冷却至其量子基态(自冷却)。从基于Heisenberg-Langevin方程的理论中,我们可以发现,当空腔带宽小于机械频率但仍大于有效机械阻尼时,最佳自冷却发生在良好的空腔状态中。在这种情况下,腔内场和振动机械模式连贯地交换它们的波动,从而将反射镜温度降低了几个数量级。我们还提供了动态计算,该计算显示了如何通过对反射场波动的零差测量来获取反射镜温度。

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