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高效地对量子系统进行分类。

Sorting quantum systems efficiently.

作者信息

Ionicioiu Radu

机构信息

Department of Theoretical Physics, Horia Hulubei National Institute of Physics and Nuclear Engineering, 077125 Bucharest-Măgurele, Romania.

Research Center for Spatial Information - CEOSpaceTech, University Politehnica of Bucharest, 313 Splaiul Independenţei, 061071 Bucharest, Romania.

出版信息

Sci Rep. 2016 May 4;6:25356. doi: 10.1038/srep25356.

Abstract

Measuring the state of a quantum system is a fundamental process in quantum mechanics and plays an essential role in quantum information and quantum technologies. One method to measure a quantum observable is to sort the system in different spatial modes according to the measured value, followed by single-particle detectors on each mode. Examples of quantum sorters are polarizing beam-splitters (PBS) - which direct photons according to their polarization - and Stern-Gerlach devices. Here we propose a general scheme to sort a quantum system according to the value of any d-dimensional degree of freedom, such as spin, orbital angular momentum (OAM), wavelength etc. Our scheme is universal, works at the single-particle level and has a theoretical efficiency of 100%. As an application we design an efficient OAM sorter consisting of a single multi-path interferometer which is suitable for a photonic chip implementation.

摘要

测量量子系统的状态是量子力学中的一个基本过程,并且在量子信息和量子技术中起着至关重要的作用。测量量子可观测量的一种方法是根据测量值将系统分类到不同的空间模式中,然后在每个模式上使用单粒子探测器。量子分选器的例子包括偏振分束器(PBS)——它根据光子的偏振来引导光子——以及斯特恩-盖拉赫装置。在这里,我们提出了一种通用方案,用于根据任何d维自由度的值对量子系统进行分类,例如自旋、轨道角动量(OAM)、波长等。我们的方案是通用的,在单粒子水平上起作用,并且理论效率为100%。作为一个应用,我们设计了一种由单个多路径干涉仪组成的高效OAM分选器,它适用于光子芯片实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddb0/4855204/5b98f7b07130/srep25356-f1.jpg

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