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基于囚禁离子的测量型量子计算。

Measurement-based quantum computation with trapped ions.

机构信息

Institut für Quantenoptik und Quanteninformation, Österreichische Akademie der Wissenschaften, Technikerstraße 21A, 6020 Innsbruck, Austria and Institut für Experimentalphysik, Universität Innsbruck, Technikerstraße 25, 6020 Innsbruck, Austria.

出版信息

Phys Rev Lett. 2013 Nov 22;111(21):210501. doi: 10.1103/PhysRevLett.111.210501. Epub 2013 Nov 19.

Abstract

Measurement-based quantum computation represents a powerful and flexible framework for quantum information processing, based on the notion of entangled quantum states as computational resources. The most prominent application is the one-way quantum computer, with the cluster state as its universal resource. Here we demonstrate the principles of measurement-based quantum computation using deterministically generated cluster states, in a system of trapped calcium ions. First we implement a universal set of operations for quantum computing. Second we demonstrate a family of measurement-based quantum error correction codes and show their improved performance as the code length is increased. The methods presented can be directly scaled up to generate graph states of several tens of qubits.

摘要

基于纠缠量子态作为计算资源的测量基量子计算代表了一种强大而灵活的量子信息处理框架。最突出的应用是单路量子计算机,其通用资源是簇态。在这里,我们使用确定性产生的簇态在囚禁钙离子系统中演示了基于测量的量子计算原理。首先,我们实现了一套用于量子计算的通用操作。其次,我们展示了一类基于测量的量子错误校正码,并表明随着码长的增加,它们的性能得到了提高。所提出的方法可以直接扩展以生成几十个量子比特的图态。

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