Towards joint reconstruction of noise and losses in quantum channels

F. Piacentini, A. Avella, P. Traina, L. Lolli, E. Taralli, Eugenio Monticone, M. Rajteri, D. Fukuda, I. Degiovanni, G. Brida
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引用次数: 1

Abstract

Abstract The calibration of a quantum channel, i.e. the determination of the transmission losses affecting it, is definitely one of the principal objectives in both the quantum communication and quantum metrology frameworks. Another task of the utmost relevance is the identification, e.g. by extracting its photon number distribution, of the noise potentially present in the channel. Here we present a protocol, based on the response of a photon-number-resolving detector at different quantum efficiencies, able to accomplish both of these tasks at once, providing with a single measurement an estimate of the transmission losses as well as the photon statistics of the noise present in the exploited quantum channel. We show and discuss the experimental results obtained in the practical implementation of such protocol, with different kinds and levels of noise.
量子信道中噪声和损耗的联合重建
量子信道的校准,即确定影响它的传输损耗,无疑是量子通信和量子计量框架的主要目标之一。另一个最相关的任务是识别,例如,通过提取其光子数分布,可能存在于信道中的噪声。在这里,我们提出了一种协议,基于不同量子效率下光子数解析探测器的响应,能够同时完成这两项任务,提供传输损失的估计以及被利用量子通道中存在的噪声的光子统计。我们展示并讨论了在不同种类和水平的噪声下实际实施该协议所获得的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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