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横向编码量子门集的限制

Restrictions on transversal encoded quantum gate sets.

作者信息

Eastin Bryan, Knill Emanuel

机构信息

National Institute of Standards and Technology, Boulder, Colorado 80305, USA.

出版信息

Phys Rev Lett. 2009 Mar 20;102(11):110502. doi: 10.1103/PhysRevLett.102.110502. Epub 2009 Mar 18.

Abstract

Transversal gates play an important role in the theory of fault-tolerant quantum computation due to their simplicity and robustness to noise. By definition, transversal operators do not couple physical subsystems within the same code block. Consequently, such operators do not spread errors within code blocks and are, therefore, fault tolerant. Nonetheless, other methods of ensuring fault tolerance are required, as it is invariably the case that some encoded gates cannot be implemented transversally. This observation has led to a long-standing conjecture that transversal encoded gate sets cannot be universal. Here we show that the ability of a quantum code to detect an arbitrary error on any single physical subsystem is incompatible with the existence of a universal, transversal encoded gate set for the code.

摘要

由于横向门的简单性以及对噪声的鲁棒性,它们在容错量子计算理论中起着重要作用。根据定义,横向算子不会耦合同一编码块内的物理子系统。因此,此类算子不会在编码块内传播错误,所以具有容错能力。然而,由于总是存在一些编码门无法横向实现的情况,因此还需要其他确保容错的方法。这一观察结果导致了一个长期存在的猜想,即横向编码门集不可能是通用的。在此我们表明,量子码检测任何单个物理子系统上任意错误的能力与该码存在通用的横向编码门集是不相容的。

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