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Kak's three-stage protocol of secure quantum communication revisited: hitherto unknown strengths and weaknesses of the protocol

机译:KAK的三阶段安全量子通信协议重新判断:迄今为止未知的优势和协议的弱点

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摘要

Kak's three-stage protocol for quantum key distribution is revisited with special focus on its hitherto unknown strengths and weaknesses. It is shown that this protocol can be used for secure direct quantum communication. Further, the implementability of this protocol in the realistic situation is analyzed by considering various Markovian noise models. It is found that the Kak's protocol and its variants in their original form can be implemented only in a restricted class of noisy channels, where the protocols can be transformed to corresponding protocols based on logical qubits in decoherence free subspace. Specifically, it is observed that Kak's protocol can be implemented in the presence of collective rotation and collective dephasing noise, but cannot be implemented in its original form in the presence of other types of noise, like amplitude and phase damping noise. Further, the performance of the protocol in the noisy environment is quantified by computing average fidelity under various noise models, and subsequently a set of preferred states for secure communication in noisy environment have also been identified.
机译:KAK的三阶段议定书是Quantum关键分布的三阶段协议,并特别关注其迄今为止未知的优势和劣势。结果表明,该协议可用于安全直接量子通信。此外,通过考虑各种马尔科维亚噪声模型来分析该协议在现实情况中的可实现性。发现KAK的协议及其原始形式的变体可以仅在受限制的噪声信道中实现,其中协议可以基于障碍物障碍子空间中的逻辑QUBITS转换为相应的协议。具体地,观察到KAK的协议可以在集体旋转和集体去除噪声的存在中实现,而是不能在其它类型的噪声存在下以其原始形式实现,如幅度和相位阻尼噪声。此外,通过在各种噪声模型下计算平均保真度,并且随后还被识别出通过计算各种噪声模型的平均保真度来量化噪声环境中的性能。

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