论文标题

使用直接光子测量为高斯州量子照明绑定

Bound for Gaussian-state Quantum illumination using direct photon measurement

论文作者

Lee, Su-Yong, Kim, Dong Hwan, Jo, Yonggi, Jeong, Taek, Kim, Duk Y., Kim, Zaeill

论文摘要

找到量子信息协议的可行测量范围很重要。我们介绍了使用On-Owt检测或光子数分辨率(PNR)检测时与高斯状态进行量子照明的分析界限,在该检测中,其性能以信噪比的比率进行评估。首先,为了巧合计数测量,最佳性能是由两种模式挤压真空(TMSV)态给出的,该状态的表现优于相干状态和经典相关的热(CCT)状态。但是,在开关检测的情况下,相干状态可以以增加信号的平均光子数来击败TMSV状态。其次,通过采用所有计数概率(包括非检测事件)的Fisher信息方法来增强性能。在Fisher信息方法中,TMSV状态仍然表现出最佳性能,但在ON-OFF检测情况下,CCT状态可以以增加信号的平均光子数来击败TMSV状态。此外,我们表明,在信号模式下进行PNR检测以及在iDler模式上的On-Owt检测很有用,这在两种模式下都达到了使用PNR检测的相似性能。

It is important to find feasible measurement bounds for quantum information protocols. We present analytic bounds for quantum illumination with Gaussian states when using an on-off detection or a photon number resolving (PNR) detection, where its performance is evaluated with signal-to-noise ratio. First, for coincidence counting measurement, the best performance is given by the two-mode squeezed vacuum (TMSV) state which outperforms the coherent state and the classically correlated thermal (CCT) state. However, the coherent state can beat the TMSV state with increasing signal mean photon number in the case of the on-off detection. Second, the performance is enhanced by taking Fisher information approach of all counting probabilities including non-detection events. In the Fisher information approach, the TMSV state still presents the best performance but the CCT state can beat the TMSV state with increasing signal mean photon number in the case of the on-off detection. Furthermore, we show that it is useful to take the PNR detection on the signal mode and the on-off detection on the idler mode, which reaches similar performance of using PNR detections on both modes.

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