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Non-Markovian dynamics in two-qubit dephasing channels with an application to superdense coding

机译:两比特相移通道中的非马尔可夫动力学及其在超密集编码中的应用

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摘要

We study the performance of two measures of non-Markovianity in detecting memory effects in two-qubit dephasing channels. By combining independent Markovian and non-Markovian noise on the qubits, our results show that the trace distance measure is able to detect the memory effects when at least one of the local channels displays non-Markovianity. A measure based on channel capacity, in turn, becomes nonzero when the global two-qubit dynamics shows memory effects. We apply these schemes to a well-known superdense coding protocol and demonstrate an optimal noise configuration to maximize the information transmission with independent local noises.
机译:我们研究了两种非马尔可夫性量度在检测两比特移相通道中的记忆效应中的性能。通过在量子位上组合独立的马尔可夫噪声和非马尔可夫噪声,我们的结果表明,当至少一个本地通道显示非马尔可夫性时,跟踪距离度量能够检测到记忆效应。当全局二比特动态显示内存效应时,基于信道容量的度量又将变为非零。我们将这些方案应用于众所周知的超密集编码协议,并演示了一种最佳的噪声配置,以利用独立的本地噪声最大化信息传输。

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