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利用纠缠发光二极管对激光产生的光子进行量子隐形传态。

Quantum teleportation of laser-generated photons with an entangled-light-emitting diode.

机构信息

Toshiba Research Europe Limited, 208 Science Park, Milton Road, Cambridge CB4 0GZ, UK.

出版信息

Nat Commun. 2013;4:2859. doi: 10.1038/ncomms3859.

Abstract

Quantum teleportation can transfer information between physical systems, which is essential for engineering quantum networks. Of the many technologies being investigated to host quantum bits, photons have obvious advantages as 'pure' quantum information carriers, but their bandwidth and energy is determined by the quantum system that generates them. Here we show that photons from fundamentally different sources can be used in the optical quantum teleportation protocol. The sources we describe have bandwidth differing by a factor over 100, but we still observe teleportation with average fidelity of 0.77, beating the quantum limit by 10 standard deviations. Furthermore, the dissimilar nature of our sources exposes physics hidden in previous experiments, which we also predict numerically. These phenomena include converting qubits from Poissonian to Fock statistics, quantum interference, beats and teleportation for spectrally non-degenerate photons, and acquisition of evolving character following teleportation of a qubit.

摘要

量子隐形传态可以在物理系统之间传输信息,这对于构建量子网络至关重要。在众多被研究用于承载量子位的技术中,光子作为“纯”量子信息载体具有明显的优势,但它们的带宽和能量取决于产生它们的量子系统。在这里,我们展示了来自根本不同源的光子可以用于光学量子隐形传态协议。我们所描述的源的带宽相差超过 100 倍,但我们仍然观察到平均保真度为 0.77 的隐形传态,比量子极限高出 10 个标准差。此外,我们源的不同性质揭示了以前实验中隐藏的物理现象,我们也通过数值预测了这些现象。这些现象包括将量子比特从泊松统计转换为福克统计、量子干涉、拍频以及对非简并光子的隐形传态,以及在量子比特隐形传态后获取其演化特征。

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