量子计量学
量子
物理
量子传感器
纺纱
互惠的
光力学
测距
对称性破坏
量子极限
量子技术
理论物理学
开放量子系统
量子力学
经典力学
计算机科学
机械工程
工程类
电信
哲学
语言学
作者
Jie Wang,Qian Zhang,Ya‐Feng Jiao,Sheng-Dian Zhang,Tian-Xiang Lu,Zhipeng Li,Cheng‐Wei Qiu,Hui Jing
出处
期刊:Applied physics reviews
[American Institute of Physics]
日期:2024-07-30
卷期号:11 (3)
被引量:3
摘要
Cavity optomechanical (COM) sensors, featuring efficient light–motion couplings, have been widely used for ultrasensitive measurements of various physical quantities ranging from displacements to accelerations or weak forces. Previous works, however, have mainly focused on reciprocal COM systems. Here, we propose how to further improve the performance of quantum COM sensors by breaking reciprocal symmetry in purely quantum regime. Specifically, we consider a spinning COM resonator and show that by selectively driving it in opposite directions, highly nonreciprocal optical squeezing can emerge, which in turn provides an efficient way to surpass the standard quantum limit which is otherwise unattainable for the corresponding reciprocal devices. Our work confirms that breaking reciprocal symmetry, already achieved in diverse systems well beyond spinning systems, can serve as a new strategy to further enhance the abilities of advanced quantum sensors, for applications ranging from testing fundamental physical laws to practical quantum metrology.
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