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通过奇异值分解对有损N端口器件中的量子干涉进行广义处理。

Generalized approach to quantum interference in lossy N-port devices via a singular value decomposition.

作者信息

Hernández Osmery, Liberal Iñigo

出版信息

Opt Express. 2022 Aug 15;30(17):31267-31286. doi: 10.1364/OE.456495.

Abstract

Modeling quantum interference in the presence of dissipation is a critical aspect of quantum technologies. Including dissipation into the model of a linear device enables for assessing the detrimental impact of photon loss, as well as for studying dissipation-driven quantum state transformations. However, establishing the input-output relations characterizing quantum interference at a general lossy N-port network poses important theoretical challenges. Here, we propose a general procedure based on the singular value decomposition (SVD), which allows for the efficient calculation of the input-output relations for any arbitrary lossy linear device. In addition, we show how the SVD provides an intuitive description of the principle of operation of linear optical devices. We illustrate the applicability of our method by evaluating the input-output relations of popular reciprocal and nonreciprocal lossy linear devices, including devices with singular and nilpotent scattering matrices. Our method also enables the analysis of quantum interference in large lossy networks, as we exemplify with the study of an N-port epsilon-near-zero (ENZ) hub. We expect that our procedure will motivate future research on quantum interference in complex devices, as well as the realistic modelling of photon loss in linear lossy devices.

摘要

在存在耗散的情况下对量子干涉进行建模是量子技术的一个关键方面。将耗散纳入线性器件模型有助于评估光子损失的有害影响,以及研究耗散驱动的量子态变换。然而,在一般的有损N端口网络中建立表征量子干涉的输入 - 输出关系面临着重要的理论挑战。在此,我们提出一种基于奇异值分解(SVD)的通用方法,它能够高效计算任意有损线性器件的输入 - 输出关系。此外,我们展示了奇异值分解如何为线性光学器件的工作原理提供直观描述。我们通过评估常见的互易和非互易有损线性器件(包括具有奇异和幂零散射矩阵的器件)的输入 - 输出关系来说明我们方法的适用性。我们的方法还能够分析大型有损网络中的量子干涉,正如我们以对N端口近零介电常数(ENZ)集线器的研究为例所展示的那样。我们期望我们的方法将推动未来对复杂器件中量子干涉的研究,以及对线性有损器件中光子损失的实际建模。

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