Enhancing the Sensitivity of Quantum Fiber‐Optical Gyroscope via a Non‐Gaussian‐State Probe

Wen‐Xun Zhang, Rui Zhang, Yunlan Zuo, Le‐Man Kuang
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Abstract

A theoretical scheme to enhance the sensitivity of a quantum fiber‐optical gyroscope (QFOG) via a non‐Gaussian‐state probe based on quadrature measurements of the optical field is proposed. The non‐Gaussian‐state probe utilizes the product state comprising a photon‐added coherent state (PACS) with photon excitations and a coherent state (CS). The sensitivity of the QFOG is studied and it is found that it can be significantly enhanced through increasing the photon excitations in the PACS probe. The influence of photon loss on the performance of QFOG is investigated and it is demonstrated that the PACS probe exhibits robust resistance to photon loss. Furthermore, the performance of the QFOG using the PACS probe against two Gaussian‐state probes: the CS probe and the squeezed state (SS) probe is compared and it is indicated that the PACS probe offers a significant advantage in terms of sensitivity, regardless of photon loss, under the constraint condition of the same total number of input photons. Particularly, it is found that the sensitivity of the PACS probe can be three orders of magnitude higher than that of two Gaussian‐state probes for certain values of the measured parameter. The capabilities of the non‐Gaussian state probe in enhancing the sensitivity and resisting photon loss can have a wide‐ranging impact on future high‐performance QFOGs.
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通过非高斯状态探测器提高量子光纤陀螺仪的灵敏度
本文提出了一种理论方案,通过基于光场正交测量的非高斯态探针来提高量子光纤陀螺仪(QFOG)的灵敏度。非高斯态探针利用的是由光子激发的光子添加相干态(PACS)和相干态(CS)组成的乘积态。对 QFOG 的灵敏度进行了研究,发现通过增加 PACS 探针中的光子激发可以显著提高灵敏度。研究了光子损耗对 QFOG 性能的影响,结果表明 PACS 探头具有强大的抗光子损耗能力。此外,还比较了使用 PACS 探头的 QFOG 与 CS 探头和挤压态(SS)探头这两种高斯态探头的性能,结果表明,在输入光子总数相同的约束条件下,无论光子损耗如何,PACS 探头在灵敏度方面都具有显著优势。特别是,在某些测量参数值下,PACS 探头的灵敏度比两个高斯态探头高出三个数量级。非高斯态探针在提高灵敏度和抗光子损耗方面的能力将对未来的高性能 QFOG 产生广泛影响。
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