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Phase-reference monitoring in coherent-state discrimination assisted by a photon-number resolving detector

机译:光子数分辨检测器辅助相干态鉴别中的相位参考监测

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Phase estimation represents a crucial challenge in many fields of Physics, ranging from Quantum Metrology to Quantum Information Processing. This task is usually pursued by means of interferometric schemes, in which the choice of the input states and of the detection apparatus is aimed at minimizing the uncertainty in the estimation of the relative phase between the inputs. State discrimination protocols in communication channels with coherent states also require the monitoring of the optical phase. Therefore, the problem of phase estimation is relevant to face the issue of coherent states discrimination. Here we consider a quasi-optimal Kennedy-like receiver, based on the interference of two coherent signals, to be discriminated, with a reference local oscillator. By means of the Bayesian processing of a small amount of data drawn from the outputs of the shot-by-shot discrimination protocol, we demonstrate the achievement of the minimum uncertainty in phase estimation, also in the presence of uniform phase noise. Moreover, we show that the use of photon-number resolving detectors in the receiver improves the phase-estimation strategy, especially with respect to the usually employed on/off detectors. From the experimental point of view, this comparison is realized by employing hybrid photodetectors.
机译:在从量子计量学到量子信息处理的许多物理领域中,相位估计是一个至关重要的挑战。通常通过干涉测量方案来实现该任务,其中输入状态和检测设备的选择旨在最小化输入之间的相对相位的估计中的不确定性。具有相干状态的通信信道中的状态区分协议也需要监视光相位。因此,相位估计问题与面对相干态歧视问题有关。在这里,我们考虑基于两个相干信号的干扰,用参考本地振荡器来区分拟最佳肯尼迪式接收机。通过逐次拍摄鉴别协议的输出中抽取的少量数据的贝叶斯处理,我们证明了在相位估计均匀的情况下,即使在存在统一的相位噪声的情况下,最小不确定性的实现。此外,我们表明,在接收器中使用光子数分辨检测器可以改善相位估计策略,尤其是相对于通常使用的开/关检测器而言。从实验的角度来看,这种比较是通过采用混合光电探测器实现的。

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