论文标题

通过Atom-Light杂种干涉仪中的不对称增益优化感知性能提高

Sensing performance enhancement via asymmetric gain optimization in the atom-light hybrid interferometer

论文作者

Yu, Zhifei, Fang, Bo, Chen, Shuying, Liu, Pan, Bao, Guzhi, Yuan, Chun-hua, Chen, L. Q

论文摘要

SU(1,1) - 型原子 - 轻型混合干涉仪(SALHI)是一种对光相和原子相敏感的干涉仪。但是,在实际应用中,损失是不可避免的问题,并且极大地限制了干涉仪的使用。可见性是评估干涉仪的传感性能的重要参数。在这里,我们通过非对称增益优化实验证明了损失对SALHI可见度的缓解作用,其中最大损失阈值接近$ 100 \%$ $。此外,我们从理论上发现,最大可见性的最佳条件与在存在强度检测的损失的情况下提高信噪比(SNR)与最佳价值的最佳条件相同,这表明可见度可以作为实践应用中SNR改进的实验性操作标准。提高干扰可见性意味着实现SNR增强。我们的结果为SALHI在雷达和范围测量中的实际应用提供了重要基础。

The SU (1,1)-type atom-light hybrid interferometer (SALHI) is a kind of interferometer that is sensitive to both the optical phase and atomic phase. However, the loss has been an unavoidable problem in practical applications and greatly limits the use of interferometers. Visibility is an important parameter to evaluate the sensing performance of interferometers. Here, we experimentally demonstrate the mitigating effect of the loss on visibility of the SALHI via asymmetric gain optimization, where the maximum threshold of loss to visibility close to $100\%$ is increased. Furthermore, we theoretically find that the optimal condition for the largest visibility is the same as that for the enhancement of signal-to-noise ratio (SNR) to the best value in the presence of losses using the intensity detection, indicating that the visibility can act as an experimental operational criterion for SNR improvement in practical applications. Improvement of the interference visibility means achievement of SNR enhancement. Our results provide a significant foundation for practical application of the SALHI in radar and ranging measurements.

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