论文标题

光杆检测中的背部动作逃避

Back action evasion in optical lever detection

论文作者

Hao, Shan, Purdy, Thomas

论文摘要

光杆是一种数百年来的古老且广泛使用的检测技术,该技术涉及从消费产品,工业传感器到科学研究中使用的精确力显微镜。但是,尽管历史悠久,但其量子限制尚未探索。通常,任何精确的光学测量都伴随着对测量对象(称为背部动作)的光学诱导干扰,导致标准量子极限(SQL)。在这里,我们给出了一个简单的光学光学描述,说明如何在光杆检测中逃避这种背部动作以击败SQL。我们通过开发一种透镜系统来实现原则实验,以证明经典状态中的背部动作逃避机制,该镜头系统取消了由激光点毫米噪声诱导的光学摩qu的硝酸硅膜机械谐振器从氮化硅膜机械谐振器中额外倾斜。我们获得了比SQL低两个数量级的读数噪声,对应于100的有效光学机械合作,而无需光腔。由于与量子传感相关的最先进的超低耗散系统正在迅速接近量子噪声主导的水平,因此简单且广泛适用的背部动作逃避协议对于推动超越量子限制至关重要。

The optical lever is a centuries old and widely-used detection technique employed in applications ranging from consumer products, industrial sensors to precision force microscopes used in scientific research. However, despite the long history, its quantum limits have yet to be explored. In general, any precision optical measurement is accompanied by optical force induced disturbance to the measured object (termed as back action) leading to a standard quantum limit(SQL). Here we give a simple ray optics description of how such back action can be evaded in optical lever detection to beat SQL. We perform a proof-of-principle experiment demonstrating the mechanism of back action evasion in the classical regime, by developing a lens system that cancels extra tilting of the reflected light off a silicon nitride membrane mechanical resonator caused by laser-pointing-noise-induced optical torques. We achieve a readout noise floor two orders of magnitude lower than the SQL, corresponding to an effective optomechanical cooperativity of 100 without the need for an optical cavity. As the state-of-the-art ultra low dissipation optomechanical systems relevant for quantum sensing are rapidly approaching the level where quantum noise dominates, simple and widely applicable back action evading protocols will be crucial for pushing beyond quantum limits.

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