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Performance of non-CSS LDGM-based quantum codes over the misidentified depolarizing channel

机译:非CSS LDGM量子码在误识别的去极化通道上的性能

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Quantum Low Density Generator Matrix (QLDGM) codes based on Calderbank-Steane-Shor (CSS) constructions have shown unprecedented error correction capabilities in the paradigm of quantum communication. Recently, a strategy based on non-CSS quantum codes derived from QLDGM CSS codes has been shown to surpass other Quantum Low Density Parity Check (QLDPC) schemes proposed in the literature over the depolarizing channel. Given the importance of quantum channel estimation and the impact it has on the performance of QLDPC codes, in this article, we study the behaviour of non-CSS QLDGM codes under the umbrella of channel mismatch. We begin by showing how a relatively accurate estimate of the quantum channel is pivotal for these codes to perform appropriately. We follow this by analyzing an off-line and an on-line quantum channel parameter estimation technique, as well as discussing how these methods affect the Quantum Error Correction (QEC) codes under consideration. Finally, we show how the on-line methodology yields similar performance to the perfect channel knowledge scenario despite its relative simplicity.
机译:基于Calderbank-Steane-Shor(CSS)构造的量子低密度生成器矩阵(QLDGM)代码在量子通信范式中显示出前所未有的纠错能力。最近,基于从QLDGM CSS代码派生的非CSS量子代码的策略已显示出在去极化通道上超过了文献中提出的其他量子低密度奇偶校验(QLDPC)方案。考虑到量子信道估计的重要性及其对QLDPC码性能的影响,在本文中,我们研究了在信道失配保护下非CSS QLDGM码的行为。我们首先显示量子信道的相对准确的估计如何使这些代码正确执行至关重要。接下来,我们通过分析离线和在线量子通道参数估计技术,并讨论这些方法如何影响所考虑的量子误差校正(QEC)码。最后,我们展示了在线方法尽管相对简单,却如何产生与完美通道知识场景相似的性能。

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