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Quantum Error Correction in the Presence of Initial System-Environment Correlations

机译:初始系统环境相关性存在量子误差校正

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Quantum error correction is studied in a framework consisting of an open quantum system and its environment, jointly subjected to a unitary action, and an interaction-free reference system. It has been shown that coherent information between the initially correlated open system and reference system is conserved in the transmission stage of any quantum communication process, provided that the tripartite input is any pure Markov state and the overall evolution preserves its form. This conservation constitutes the necessary and sufficient condition for accomplishment of perfect error correction by a recovery channel even in the presence of initial system-environment correlations. Explicit expressions of the recovery operators and examples of the joint unitary evolution preserving the form of inputs are given for all classes of pure Markov states.
机译:在由开放量子系统及其环境组成的框架中研究了量子误差校正,共同经受了单一动作,以及无相互作用的参考系统。已经表明,在任何量子通信过程的传输阶段,最初相关的开放系统和参考系统之间的相干信息提供了任何量子通信过程的传输阶段,条件是该三方输入是任何纯粹的马尔可夫状态,并且整体演进保留其形式。即使在存在初始系统环境相关性的情况下,这种保护也是通过恢复信道完成完美误差校正的必要和充分条件。恢复运营商的明确表达和保留投入形式的联合统一演化的例子是针对所有类别的纯粹马尔可夫州。

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