论文标题

子射击噪声接收器的阶段跟踪

Phase tracking for sub-shot-noise-limited receivers

论文作者

DiMario, M. T., Becerra, F. E.

论文摘要

基于非高斯测量值(例如光子计数)的相位状态的非惯性接收器超过了射击噪声限制的相干接收器的灵敏度极限,量子噪声限制(QNL)。这些非高斯接收器可能会对未来的连贯通信技术产生重大影响。但是,诸如光纤诸如光纤之类的现实通信渠道的随机阶段变化提出了提取在相干状态中编码的信息的严重挑战。虽然有一些方法可以用常规的杂作检测来纠正随机相位噪声,但超过QNL的非高斯接收器的相位跟踪仍然是一个悬而未决的问题。在这里,我们演示了非高斯接收器的相位跟踪,以校正时变相噪声,同时允许解码QNL。相跟踪方法使用非高斯歧视测量的数据执行实时参数估计和相位漂移的校正,而无需依赖相参考试验场。这种方法使非高斯接收器能够在逼真的相位噪声中实现更高的敏感性和信息传递速率。该演示使子QNL接收器成为经典和量子通信的更强大,可行和实用的量子技术。

Non-conventional receivers for phase-coherent states based on non-Gaussian measurements such as photon counting surpass the sensitivity limits of shot-noise-limited coherent receivers, the quantum noise limit (QNL). These non-Gaussian receivers can have a significant impact in future coherent communication technologies. However, random phase changes in realistic communication channels, such as optical fibers, present serious challenges for extracting the information encoded in coherent states. While there are methods for correcting random phase noise with conventional heterodyne detection, phase-tracking for non-Gaussian receivers surpassing the QNL is still an open problem. Here we demonstrate phase tracking for non-Gaussian receivers to correct for time-varying phase noise while allowing for decoding beyond the QNL. The phase-tracking method performs real-time parameter estimation and correction of phase drifts using the data from the non-Gaussian discrimination measurement, without relying on phase reference pilot fields. This method enables non-Gaussian receivers to achieve higher sensitivities and rates of information transfer than ideal coherent receivers in realistic channels with time-varying phase noise. This demonstration makes sub-QNL receivers a more robust, feasible, and practical quantum technology for classical and quantum communications.

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