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量子诱导相干光探测与测距

Quantum Induced Coherence Light Detection and Ranging.

作者信息

Qian Gewei, Xu Xingqi, Zhu Shun-An, Xu Chenran, Gao Fei, Yakovlev V V, Liu Xu, Zhu Shi-Yao, Wang Da-Wei

机构信息

Interdisciplinary Center for Quantum Information, State Key Laboratory of Modern Optical Instrumentation, and Zhejiang Province Key Laboratory of Quantum Technology and Device, School of Physics, Zhejiang University, Hangzhou 310027, Zhejiang Province, China.

ZJU-Hangzhou Global Science and Technology Innovation Center, College of Information Science and Electronic Engineering, Zhejiang University, Hangzhou 310027, China.

出版信息

Phys Rev Lett. 2023 Jul 21;131(3):033603. doi: 10.1103/PhysRevLett.131.033603.

Abstract

Quantum illumination has been proposed and demonstrated to improve the signal-to-noise ratio (SNR) in light detection and ranging (LiDAR). When relying on coincidence detection alone, such a quantum LiDAR is limited by the timing jitter of the detector and suffers from jamming noise. Inspired by the Zou-Wang-Mandel experiment, we design, construct, and validate a quantum induced coherence (QuIC) LiDAR which is inherently immune to ambient and jamming noises. In traditional LiDAR the direct detection of the reflected probe photons suffers from deteriorating SNR for increasing background noise. In QuIC LiDAR we circumvent this obstacle by only detecting the entangled reference photons, whose single-photon interference fringes are used to obtain the distance of the object, while the reflected probe photons are used to erase path information of the reference photons. In consequence, the noise accompanying the reflected probe light has no effect on the detected signal. We demonstrate such noise resilience with both LED and laser light to mimic the background and jamming noise. The proposed method paves a new way of battling noise in precise quantum electromagnetic sensing and ranging.

摘要

量子照明已被提出并证明可提高光探测与测距(LiDAR)中的信噪比(SNR)。当仅依靠符合检测时,这种量子LiDAR受到探测器定时抖动的限制,并受到干扰噪声的影响。受邹-王-曼德尔实验的启发,我们设计、构建并验证了一种量子诱导相干(QuIC)LiDAR,它本质上对环境噪声和干扰噪声具有免疫力。在传统LiDAR中,随着背景噪声增加,对反射探测光子的直接检测会导致信噪比恶化。在QuIC LiDAR中,我们通过仅检测纠缠参考光子来规避这一障碍,其单光子干涉条纹用于获取物体的距离,而反射探测光子用于消除参考光子的路径信息。因此,伴随反射探测光的噪声对检测信号没有影响。我们用LED光和激光来模拟背景噪声和干扰噪声,证明了这种抗噪声能力。所提出的方法为在精确量子电磁传感和测距中对抗噪声开辟了一条新途径。

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