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基于马约拉纳离域化的表面码相干误差阈值

Coherent-Error Threshold for Surface Codes from Majorana Delocalization.

作者信息

Venn Florian, Behrends Jan, Béri Benjamin

机构信息

DAMTP, University of Cambridge, Wilberforce Road, Cambridge, CB3 0WA, United Kingdom.

T.C.M. Group, Cavendish Laboratory, University of Cambridge, J.J. Thomson Avenue, Cambridge, CB3 0HE, United Kingdom.

出版信息

Phys Rev Lett. 2023 Aug 11;131(6):060603. doi: 10.1103/PhysRevLett.131.060603.

Abstract

Statistical mechanics mappings provide key insights on quantum error correction. However, existing mappings assume incoherent noise, thus ignoring coherent errors due to, e.g., spurious gate rotations. We map the surface code with coherent errors, taken as X or Z rotations (replacing bit or phase flips), to a two-dimensional (2D) Ising model with complex couplings, and further to a 2D Majorana scattering network. Our mappings reveal both commonalities and qualitative differences in correcting coherent and incoherent errors. For both, the error-correcting phase maps, as we explicitly show by linking 2D networks to 1D fermions, to a Z_{2}-nontrivial 2D insulator. However, beyond a rotation angle ϕ_{th}, instead of a Z_{2}-trivial insulator as for incoherent errors, coherent errors map to a Majorana metal. This ϕ_{th} is the theoretically achievable storage threshold. We numerically find ϕ_{th}≈0.14π. The corresponding bit-flip rate sin^{2}(ϕ_{th})≈0.18 exceeds the known incoherent threshold p_{th}≈0.11.

摘要

统计力学映射为量子纠错提供了关键见解。然而,现有的映射假设为非相干噪声,因此忽略了例如由于杂散门旋转引起的相干误差。我们将具有相干误差(视为X或Z旋转,取代比特翻转或相位翻转)的表面码映射到具有复耦合的二维(2D)伊辛模型,进而映射到二维马约拉纳散射网络。我们的映射揭示了在纠正相干和非相干误差方面的共性和质的差异。对于这两种情况,纠错相位映射,正如我们通过将二维网络与一维费米子联系起来明确展示的那样,映射到一个Z₂非平凡二维绝缘体。然而,超过旋转角度ϕₜₕ时,与非相干误差的Z₂平凡绝缘体不同,相干误差映射到一个马约拉纳金属。这个ϕₜₕ是理论上可实现的存储阈值。我们通过数值计算发现ϕₜₕ≈0.14π。相应的比特翻转率sin²(ϕₜₕ)≈0.18超过了已知的非相干阈值pₜₕ≈0.11。

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