物理
参量振荡器
参数统计
非线性系统
量子
稳态(化学)
压缩相干态
弱测量
动作(物理)
运动(物理)
运动学
点(几何)
机械系统
光学参量振荡器
经典力学
控制理论(社会学)
量子力学
相干态
控制(管理)
计算机科学
激光器
数学
人工智能
物理化学
几何学
化学
统计
作者
Alex Szorkovszky,Andrew C. Doherty,Glen I. Harris,Warwick P. Bowen
标识
DOI:10.1103/physrevlett.107.213603
摘要
Nonlinear forces allow motion of a mechanical oscillator to be squeezed below the zero-point motion. Of existing methods, mechanical parametric amplification is relatively accessible, but previously thought to be limited to 3dB of squeezing in the steady state. We consider the effect of applying continuous weak measurement and feedback to this system. If the parametric drive is optimally detuned from resonance, correlations between the quadratures of motion allow unlimited steady-state squeezing. Compared to back-action evasion, we demonstrate that the measurement strength, temperature and efficiency requirements for quantum squeezing are significantly relaxed.
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