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仅使用横亘门和错误校正实现通用容错量子计算。

Universal fault-tolerant quantum computation with only transversal gates and error correction.

机构信息

David R. Cheriton School of Computer Science and Institute for Quantum Computing, University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.

出版信息

Phys Rev Lett. 2013 Aug 30;111(9):090505. doi: 10.1103/PhysRevLett.111.090505. Epub 2013 Aug 29.

Abstract

Transversal implementations of encoded unitary gates are highly desirable for fault-tolerant quantum computation. Though transversal gates alone cannot be computationally universal, they can be combined with specially distilled resource states in order to achieve universality. We show that "triorthogonal" stabilizer codes, introduced for state distillation by Bravyi and Haah [Phys. Rev. A 86, 052329 (2012)], admit transversal implementation of the controlled-controlled-Z gate. We then construct a universal set of fault-tolerant gates without state distillation by using only transversal controlled-controlled-Z, transversal Hadamard, and fault-tolerant error correction. We also adapt the distillation procedure of Bravyi and Haah to Toffoli gates, improving on existing Toffoli distillation schemes.

摘要

横向编码幺正门的实现对于容错量子计算来说是非常理想的。虽然横向门本身在计算上不是通用的,但它们可以与专门提取的资源态相结合以实现通用性。我们表明,Bravyi 和 Haah 为态提取引入的“三正交”稳定子码[Phys. Rev. A 86, 052329 (2012)]允许横向实现受控受控-Z 门。然后,我们仅使用横向受控受控-Z、横向 Hadamard 和容错纠错来构建一组无需态提取的通用容错门。我们还通过使用仅横向受控受控-Z、横向 Hadamard 和容错纠错来改进现有的 Toffoli 蒸馏方案,从而自适应地将 Bravyi 和 Haah 的蒸馏过程应用于 Toffoli 门。

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