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Efficient Simulation of Quantum Error Correction Under Coherent Error Based on the Nonunitary Free-Fermionic Formalism

机译:基于非障碍误差的相干误差校正量子误差校正的高效模拟

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摘要

In order to realize fault-tolerant quantum computation, a tight evaluation of the error threshold under practical noise models is essential. While non-Clifford noise is ubiquitous in experiments, the error threshold under non-Clifford noise cannot be efficiently treated with known approaches. We construct an efficient scheme for estimating the error threshold of the one-dimensional quantum repetition code under non-Clifford noise. To this end, we employ the nonunitary free-fermionic formalism for efficient simulation of the one-dimensional repetition code under coherent noise. This allows us to evaluate the effect of coherence in noise on the error threshold without any approximation. The result shows that the error threshold becomes one-third when the noise is fully coherent. Our scheme is also applicable to the surface code undergoing a specific coherent noise model. The dependence of the error threshold on noise coherence can be explained with a leading-order analysis with respect to coherence terms in the noise map. We expect that this analysis is also valid for the surface code since it is a two-dimensional extension of the one-dimensional repetition code. Moreover, since the obtained threshold is accurate, our results can be used as a benchmark for the approximation or heuristic schemes for non-Clifford noise.
机译:为了实现容错量计算,在实际噪声模型下对误差阈值的紧密评估至关重要。虽然非克利福德噪声在实验中无处不在,但不能用已知方法有效地处理非克利福噪声下的误差阈值。我们构建一种有效的方案,用于估计非克利福噪声下的一维量子重复码的误差阈值。为此,我们采用了非障碍的自由Fermionic形式主义,以便在相干噪声下有效地模拟一维重复码。这使我们可以在没有任何近似的情况下评估噪声阈值对噪声相干的影响。结果表明,当噪声完全相干时,误差阈值变为三分之一。我们的方案也适用于正在进行特定的相干噪声模型的表面代码。误差阈值对噪声相干性的依赖性可以通过相对于噪声图中的相干术语来解释噪声相干性的依赖性。我们预期,该分析对于表面代码也有效,因为它是一维重复码的二维扩展。此外,由于获得的阈值是准确的,我们的结果可以用作非克利福噪声的近似或启发式方案的基准。

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  • 来源
    《Physical review letters》 |2017年第26期|190503.1-190503.5|共5页
  • 作者单位

    Univ Tokyo Grad Sch Engn Dept Appl Phys Bunkyo Ku 7-3-1 Hongo Tokyo 1138656 Japan|Univ Tokyo Grad Sch Engn Photon Sci Ctr Bunkyo Ku 7-3-1 Hongo Tokyo 1138656 Japan;

    Univ Tokyo Grad Sch Engn Dept Appl Phys Bunkyo Ku 7-3-1 Hongo Tokyo 1138656 Japan|Univ Tokyo Grad Sch Engn Photon Sci Ctr Bunkyo Ku 7-3-1 Hongo Tokyo 1138656 Japan|JST PRESTO 4-1-8 Honcho Kawaguchi Saitama 3320012 Japan;

    Univ Tokyo Grad Sch Engn Dept Appl Phys Bunkyo Ku 7-3-1 Hongo Tokyo 1138656 Japan|Univ Tokyo Grad Sch Engn Photon Sci Ctr Bunkyo Ku 7-3-1 Hongo Tokyo 1138656 Japan;

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