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Quantum-Enhanced Optomechanical Sensor Network

delete2025-11-01
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PRE
AI
Q
Qinghui Li
W
Wei Li
Y
Yufan Wang
王雅君 (Yajun Wang)
田龙 (Long Tian)
史少平 (Shaoping Shi)
郑耀辉 (Yaohui Zheng) *
DOI:10.1002/lpor.202501636delete
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Abstract

Abstract

En 中文
Distributed quantum sensing (DQS), an essential branch of quantum metrology, can substantially boost the sensitivity and reliability in multi-parameter estimation, achieving the Heisenberg scaling. Here, we report the first experimental demonstration of a quantum-enhanced optomechanical sensor network, achieving the DQS advantage of a maximum -fold increase trend with sensor number. The challenge of poor uniformity is addressed by decoupling and independently manipulating each optomechanical parameter, and the acquired inconsistencies are less than 2.4%. By tailoring a four-partite entangled state, the acquired quantum advantage is 57.3% compared to that with coherent probes, and 23.7% compared to that with the separable scheme. Moreover, the quantum enhanced optomechanical sensor network is applied to estimate incoherent forces, enhancing the estimation resolution by 33.7% in contrast with the separable scheme. The entanglement-enhanced optomechanical sensors with high consistency pave the way for future large-scale quantum sensor network, facilitating the micro-seismic epicenter locating, dark matter searching, and so on.
Keywords:
distributed quantum sensing
optomechanical sensor network
quantum metrology

Journal

L
Laser & Photonics Reviews
IF:
10
Papers:
1.1K
Citations:
1

Organization

S
Shanxi University
Scholars:
1.3W
Papers: 8.4K
Citations: 1.2W