首页|Enhancing force sensing in a squeezed optomechanical system with quantum non-demolition measurement

Enhancing force sensing in a squeezed optomechanical system with quantum non-demolition measurement

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A theoretical scheme is proposed to enhance the sensitivity of force sensors with quantum non-demolition measurement(QND)in an optomechanical setup assisted by four-tone optical driving and an optical parametric amplifier(OPA).With the help of special drive,the system can be simplified as the typical type of QND for force sensing,so that the backaction noise can be evaded to surpass the standard quantum limit.Besides,the added noise can be suppressed owing to the modified optical susceptibility resulting from the OPA.By introducing two oscillators coupling with two charged bodies respectively,the signal can be enhanced with the nonlinearity caused by Coulomb interaction,while the noise presents an exponential decrease.Moreover,considering the homodyne detection effect,the range of system parameters and frequency bands will be broadened.The present investigation may provide a route toward simultaneously evading backaction noise,reducing the mechanical thermal noise,and enhancing the external signal,which can be an alternative design for sensitive devices.

force sensingoptical parametric amplifierquantum non-demolition measurementoptomechanical system

Shi-Lei Chao、Zi-Hao Li、Xin-You Lü

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School of Physics,Huazhong University of Science and Technology,430074 Wuhan,China

国家重点研发计划国家自然科学基金

2021YFA140070011974125

2024

理论物理通讯(英文版)
中国科学院理论物理研究所 中国物理学会

理论物理通讯(英文版)

CSTPCD
影响因子:0.333
ISSN:0253-6102
年,卷(期):2024.76(1)
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