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Quantum capacity of Pauli channels with memory

机译:带有存储的Pauli通道的量子容量

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摘要

The amount of coherent quantum information that can be reliably transmitted down the memory Pauli channels with Markovian correlated noise is investigated. Two methods for evaluating the quantum capacity of the memory Pauli channels are proposed to try to trace the memory effect on the transmissions of quantum information. We show that the evaluation of quantum capacity can be reduced to the calculation of the initial memory state of each successive transmission. Furthermore, we derive quantum capacities of the memory phase flip channel, bit flip channel and bit-phase flip channel. Also, a lower bound of the quantum capacity of the memory depolarizing channel is obtained. An increase of the degree of memory of the channels has a positive effect on the increase of their quantum capacities.
机译:研究了可以可靠地通过马尔可夫相关噪声在存储器Pauli通道中向下传输的相干量子信息量。提出了两种评估记忆泡利信道量子容量的方法,以试图追踪记忆对量子信息传输的影响。我们表明,量子容量的评估可以简化为每个连续传输的初始存储状态的计算。此外,我们推导了存储相位翻转通道,位翻转通道和位相位翻转通道的量子容量。而且,获得了存储器去极化通道的量子容量的下限。通道的记忆度的增加对它们的量子容量的增加具有积极的影响。

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