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五光子纠缠与开放目的地量子隐形传态的实验演示。

Experimental demonstration of five-photon entanglement and open-destination teleportation.

作者信息

Zhao Zhi, Chen Yu-Ao, Zhang An-Ning, Yang Tao, Briegel Hans J, Pan Jian-Wei

机构信息

Department of Modern Physics and Hefei National Laboratory for Physical Sciences at Microscale, University of Science and Technology of China, Hefei, Anhui, 230026, China.

出版信息

Nature. 2004 Jul 1;430(6995):54-8. doi: 10.1038/nature02643.

Abstract

Quantum-mechanical entanglement of three or four particles has been achieved experimentally, and has been used to demonstrate the extreme contradiction between quantum mechanics and local realism. However, the realization of five-particle entanglement remains an experimental challenge. The ability to manipulate the entanglement of five or more particles is required for universal quantum error correction. Another key process in distributed quantum information processing, similar to encoding and decoding, is a teleportation protocol that we term 'open-destination' teleportation. An unknown quantum state of a single particle is teleported onto a superposition of N particles; at a later stage, this teleported state can be read out (for further applications) at any of the N particles, by a projection measurement on the remaining particles. Here we report a proof-of-principle demonstration of five-photon entanglement and open-destination teleportation (for N = 3). In the experiment, we use two entangled photon pairs to generate a four-photon entangled state, which is then combined with a single-photon state. Our experimental methods can be used for investigations of measurement-based quantum computation and multi-party quantum communication.

摘要

三粒子或四粒子的量子力学纠缠已通过实验实现,并被用于证明量子力学与局域实在论之间的极端矛盾。然而,五粒子纠缠的实现仍然是一个实验挑战。通用量子纠错需要具备操纵五个或更多粒子纠缠的能力。分布式量子信息处理中的另一个关键过程,类似于编码和解码,是一种我们称为“开放目的地”隐形传态的隐形传态协议。单个粒子的未知量子态被隐形传态到N个粒子的叠加态上;在稍后阶段,通过对其余粒子进行投影测量,可以在N个粒子中的任何一个上读出这个隐形传态的状态(以供进一步应用)。在此,我们报告了五光子纠缠和开放目的地隐形传态(N = 3时)的原理验证演示。在实验中,我们使用两对纠缠光子生成一个四光子纠缠态,然后将其与一个单光子态相结合。我们的实验方法可用于基于测量的量子计算和多方量子通信的研究。

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