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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Approximate quantum error correction for generalized amplitude-damping errors
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Approximate quantum error correction for generalized amplitude-damping errors

机译:用于广义幅度阻尼误差的近似量子误差校正

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摘要

We present analytic estimates of the performances of various approximate quantum error-correction schemes for the generalized amplitude-damping (GAD) qubit channel. Specifically, we consider both stabilizer and nonadditive quantum codes. The performance of such error-correcting schemes is quantified by means of the entanglement fidelity as a function of the damping probability and the nonzero environmental temperature. The recovery scheme employed throughout ourwork applies, in principle, to arbitrary quantum codes and is the analog of the perfect Knill-Laflamme recovery scheme adapted to the approximate quantum error-correction framework for the GAD error model. We also analytically recover and/or clarify some previously known numerical results in the limiting case of vanishing temperature of the environment, the well-known traditional amplitude-damping channel. In addition, our study suggests that degenerate stabilizer codes and self-complementary nonadditive codes are especially suitable for the error correction of the GAD noise model. Finally, comparing the properly normalized entanglement fidelities of the best performant stabilizer and nonadditive codes characterized by the same length, we show that nonadditive codes outperform stabilizer codes not only in terms of encoded dimension but also in terms of entanglement fidelity.
机译:我们提出了针对各种幅度阻尼(GAD)量子位通道的各种近似量子误差校正方案的性能的分析估计。具体来说,我们同时考虑了稳定剂和非加性量子码。这种纠错方案的性能通过纠缠保真度作为阻尼概率和非零环境温度的函数进行量化。我们整个工作中采用的恢复方案原则上适用于任意量子代码,并且是适用于GAD误差模型的近似量子误差校正框架的完美Knill-Laflamme恢复方案的类似物。我们还通过分析恢复和/或弄清了在众所周知的传统振幅衰减通道环境温度逐渐消失的情况下的一些先前已知的数值结果。此外,我们的研究表明,简并的稳定器代码和自互补非加性代码特别适用于GAD噪声模型的误差校正。最后,比较性能最佳的稳定器和以相同长度为特征的非加法码的正确归一化纠缠保真度,我们发现非加法码不仅在编码维方面而且在纠缠保真度方面均优于稳定器码。

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