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Error tolerance of topological codes with independent bit-flip and measurement errors

机译:具有独立位翻转和测量误差的拓扑码差错

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摘要

Topological quantum error correction codes are currently among the most promising candidates for efficiently dealing with the decoherence effects inherently present in quantum devices. Numerically, their theoretical error threshold can be calculated by mapping the underlying quantum problem to a related classical statistical-mechanical spin system with quenched disorder. Here, we present results for the general fault-tolerant regime, where we consider both qubit and measurement errors. However, unlike in previous studies, here we vary the strength of the different error sources independently. Our results highlight peculiar differences between toric and color codes. This study complements previous results published in New J. Phys. 13, 083006 (2011).
机译:拓扑量子误差校正码目前是最有希望的候选者,以有效地处理量子装置固有存在的脱机效果。 在数值上,可以通过将底层量子问题映射到具有淬火病症的相关经典统计 - 机械旋转系统来计算其理论误差阈值。 在这里,我们为一般容错制度呈现结果,我们考虑了Qubit和测量误差。 然而,与以前的研究不同,这里我们独立地改变了不同的误差源的强度。 我们的结果突出了Toric和Color Codes之间的特殊差异。 本研究补充了以前在新J. phys发表的结果。 13,083006(2011)。

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