论文标题

在耗散机械量子挤压下进行非平稳力传感

Nonstationary force sensing under dissipative mechanical quantum squeezing

论文作者

Bernal-García, D. N., Vinck-Posada, H., Woolley, M. J.

论文摘要

我们研究了驱动机械振荡器的经典力的固定和非平稳测量,并在两色调驱动下耦合到电磁腔。为此,我们基于信噪比开发了一个理论框架,以量化线性光谱测量的灵敏度。然后,我们考虑固定力传感并研究必要的条件,以最大程度地减少力量噪声。我们发现,可以通过操纵输入相干磁场的幅度来任意抑制不精确的噪声和反作用噪声,但是,力噪声功率频谱密度不能低于热波动的水平。因此,我们考虑了一种非组织方案,该方案涉及非热耗散状态制备,然后进行有限的时间测量,这使一个人可以在固定测量场景中执行远大的信噪比,远大于最大值。我们分析了非平稳瞬态示例中的两个不同的测量方案,这是一种反作用测量的测量,这意味着在力到达时修改了驱动不对称构型,而非机构测量值则使驱动器不对称构型保持不变。确定最佳力噪声灵敏度的条件,并计算相应的力噪声功率频谱密度。

We study the stationary and nonstationary measurement of a classical force driving a mechanical oscillator coupled to an electromagnetic cavity under two-tone driving. For this purpose, we develop a theoretical framework based on the signal-to-noise ratio to quantify the sensitivity of linear spectral measurements. Then, we consider stationary force sensing and study the necessary conditions to minimise the added force noise. We find that imprecision noise and back-action noise can be arbitrarily suppressed by manipulating the amplitudes of the input coherent fields, however, the force noise power spectral density cannot be reduced below the level of thermal fluctuations. Therefore, we consider a nonstationary protocol that involves non-thermal dissipative state preparation followed by a finite time measurement, which allows one to perform measurements with a signal-to-noise much greater than the maximum possible in a stationary measurement scenario. We analyse two different measurement schemes in the nonstationary transient regime, a back-action evading measurement, which implies modifying the drive asymmetry configuration upon arrival of the force, and a nonstationary measurement that leaves the drive asymmetry configuration unchanged. Conditions for optimal force noise sensitivity are determined, and the corresponding force noise power spectral densities are calculated.

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