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Appearance and Disappearance of Quantum Correlations in Measurement-Based Feedback Control of a Mechanical Oscillator

机译:机械振荡器基于测量的反馈控制中量子相关性的出现与消失

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Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurements. Here, we study how measurement-based feedback can be used to improve the visibility of quantum correlations due to the interaction of a laser field with a nanomechanical oscillator. Backaction imparted by the meter laser, due to radiation-pressure quantum fluctuations, gives rise to correlations between its phase and amplitude quadratures. These quantum correlations are observed in the experiment both as squeezing of the meter field fluctuations below the vacuum level in a homodyne measurement and as sideband asymmetry in a heterodyne measurement, demonstrating the common origin of both phenomena. We show that quantum feedback, i.e., feedback that suppresses measurement backaction, can be used to increase the visibility of the sideband asymmetry ratio. In contrast, by operating the feedback loop in the regime of noise squashing, where the in-loop photocurrent variance is reduced below the vacuum level, the visibility of the sideband asymmetry is reduced. This is due to backaction arising from vacuum noise in the homodyne detector. These experiments demonstrate the possibility, as well as the fundamental limits, of measurement-based feedback as a tool to manipulate quantum correlations.
机译:不精确度和反向作用之间的量子相关性是连续线性测量的标志。在这里,我们研究由于激光场与纳米机械振荡器的相互作用,如何使用基于测量的反馈来改善量子相关性的可见性。由于辐射压力的量子涨落,仪表激光器产生的反作用导致其相位和幅度正交之间的相关性。这些量子相关性在实验中被观察为在零差测量中将仪表场波动压缩到真空水平以下,在外差测量中被观察为边带不对称,证明了这两种现象的共同起因。我们表明,量子反馈(即抑制测量背向作用的反馈)可用于增加边带不对称率的可见性。相反,通过在噪声压缩状态下操作反馈环路,其中环路内光电流变化减小到真空水平以下,边带不对称性的可见性降低。这是由于零差检测器中的真空噪声引起的反作用。这些实验证明了基于测量的反馈作为操纵量子相关性的工具的可能性以及基本极限。

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