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实验演示图态量子错误纠正码。

Experimental demonstration of a graph state quantum error-correction code.

机构信息

Centre for Communications Research, Department of Electrical and Electronic Engineering, University of Bristol, Merchant Venturers Building, Woodland Road, Bristol BS8 1UB, UK.

Centre for Quantum Technologies, National University of Singapore, 3 Science Drive 2, Singapore 117543, Singapore.

出版信息

Nat Commun. 2014 Apr 22;5:3658. doi: 10.1038/ncomms4658.

Abstract

Scalable quantum computing and communication requires the protection of quantum information from the detrimental effects of decoherence and noise. Previous work tackling this problem has relied on the original circuit model for quantum computing. However, recently a family of entangled resources known as graph states has emerged as a versatile alternative for protecting quantum information. Depending on the graph's structure, errors can be detected and corrected in an efficient way using measurement-based techniques. Here we report an experimental demonstration of error correction using a graph state code. We use an all-optical setup to encode quantum information into photons representing a four-qubit graph state. We are able to reliably detect errors and correct against qubit loss. The graph we realize is setup independent, thus it could be employed in other physical settings. Our results show that graph state codes are a promising approach for achieving scalable quantum information processing.

摘要

可扩展的量子计算和通信需要保护量子信息免受退相干和噪声的不利影响。以前解决这个问题的工作依赖于量子计算的原始电路模型。然而,最近出现了一类被称为图态的纠缠资源,它们是保护量子信息的一种通用替代方案。根据图的结构,可以使用基于测量的技术以有效的方式检测和纠正错误。在这里,我们报告了使用图态码进行错误校正的实验演示。我们使用全光学设置将量子信息编码到表示四量子比特图态的光子中。我们能够可靠地检测错误并纠正量子比特丢失。我们实现的图是独立于设置的,因此它可以用于其他物理设置。我们的结果表明,图态码是实现可扩展量子信息处理的一种很有前途的方法。

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