Single-Shot Error Correction of Three-Dimensional Homological Product Codes

Single-Shot Error Correction of Three-Dimensional Homological Product Codes
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三维同调乘积码的单次纠错

DOI:
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发表时间:
2020
期刊:
影响因子:
9.7
通讯作者:
E. Campbell
E. Campbell
中科院分区:
物理与天体物理1区
文献类型:
--
作者:
A. O. Quintavalle;M. Vasmer;Joschka Roffe;E. Campbell

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单次误差校正仅使用一轮噪声测量值纠正数据噪声,从而消除了对密集测量重复的需求。我们介绍了量子代码限制的一般概念,该量子代码大致规定量子误差不会触发更多的测量综合症。我们证明,限制足以使对抗错误的单次解码。除此之外,我们证明了所有三维同源产品代码在其$ x $ - 组件中均显示出限制,因此对于对抗性相纤维噪声而言是单一的。对于随机相叉噪声,我们从数值上探索这些代码,并再次找到了单发保护的证据。我们的蒙特 - 卡洛模拟表明,3D表面和感谢您的摩托范围的可持续阈值分别为3.08(4)\%$和$ 2.90(2)\%$ $,这是迄今为止最高的观察到的单发阈值。为了展示超出拓扑代码类别的单次误差校正,我们还对随机构造的3D同源产品代码进行了模拟。
Single-shot error correction corrects data noise using only a single round of noisy measurements on the data qubits, removing the need for intensive measurement repetition. We introduce a general concept of confinement for quantum codes, which roughly stipulates qubit errors cannot grow without triggering more measurement syndromes. We prove confinement is sufficient for single-shot decoding of adversarial errors. Further to this, we prove that all three-dimensional homological product codes exhibit confinement in their $X$-components and are therefore single-shot for adversarial phase-flip noise. For stochastic phase-flip noise, we numerically explore these codes and again find evidence of single-shot protection. Our Monte-Carlo simulations indicate sustainable thresholds of $3.08(4)\%$ and $2.90(2)\%$ for 3D surface and toric codes respectively, the highest observed single-shot thresholds to date. To demonstrate single-shot error correction beyond the class of topological codes, we also run simulations on a randomly constructed 3D homological product code.
DOI: 10.1038/ncomms12302
发表时间: 2016-07-29
影响因子: 16.6
作者:
Brown BJ;Nickerson NH;Browne DE
通讯作者: Browne DE
DOI: 10.22331/q-2020-07-13-295
发表时间: 2020
期刊: Quantum
影响因子: 6.4
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