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离散可调谐颜色纠缠。

Discrete tunable color entanglement.

机构信息

Institute for Quantum Optics and Quantum Information, Austrian Academy of Sciences, Boltzmanngasse 3, A-1090 Vienna, Austria.

出版信息

Phys Rev Lett. 2009 Dec 18;103(25):253601. doi: 10.1103/PhysRevLett.103.253601. Epub 2009 Dec 16.

Abstract

Although frequency multiplexing of information has revolutionized the field of classical communications, the color degree of freedom (DOF) has been used relatively little for quantum applications. We experimentally demonstrate a new hybrid quantum gate that transfers polarization entanglement of nondegenerate photons onto the color DOF. We create, for the first time, high-quality, discretely color-entangled states (with energy band gap up to 8.4 THz) without any spectrally selective filtering, and unambiguously verify and quantify the amount of entanglement (tangle, 0.611 +/- 0.009) by reconstructing a restricted density matrix; we generate a range of maximally entangled states, including a set of mutually unbiased bases for an encoded qubit space. The technique can be generalized to transfer polarization entanglement onto other photonic DOFs, like orbital angular momentum.

摘要

尽管频率复用信息已经彻底改变了经典通信领域,但颜色自由度(DOF)在量子应用中相对较少使用。我们实验证明了一种新的混合量子门,它将非简并光子的偏振纠缠转移到颜色 DOF 上。我们首次在没有任何光谱选择性滤波的情况下创建了高质量、离散颜色纠缠态(能隙高达 8.4 THz),并通过重建受限密度矩阵明确验证和量化纠缠量(纠缠度,0.611 +/- 0.009);我们生成了一系列最大纠缠态,包括编码量子位空间的一组相互无偏基。该技术可以推广到将偏振纠缠转移到其他光子 DOF,如轨道角动量。

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