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Characterizing non-Markovianity via quantum interferometric power

机译:通过量子干涉功率表征非马尔可夫性

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摘要

Non-Markovian evolution in open quantum systems is often characterized in terms of the backflow of information from environment to system and is thus an important facet in investigating the performance and robustness of quantum information protocols. In this work, we explore non Markovianity through the breakdown of monotonicity of a metrological figure of merit, called the quantum interferometric power, which is based on the minimal quantum Fisher information obtained by local unitary evolution of one part of the system, and can be interpreted as a quantifier of quantum correlations beyond entanglement. We investigate our proposed non-Markovianity indicator in two relevant examples. First, we consider the action of a single-party dephasing channel on a maximally entangled two-qubit state, by applying the Jamiołkowski Choi isomorphism. We observe that the proposed measure is consistent with established non-Markovianity quantifiers defined using other approaches based on dynamical divisibility, distinguishability, and breakdown of monotonicity for the quantum mutual information. Further, we consider the dynamics of two-qubit Werner states, under the action of a local, single-party amplitude damping channel, and observe that the nonmonotonic evolution of the quantum interferometric power is more robust than the corresponding one for entanglement in capturing the backflow of quantum information associated with the non-Markovian process. Implications for the role of non- Markovianity in quantum metrology and possible extensions to continuous variable systems are discussed.
机译:开放式量子系统中的非马尔可夫演化通常以信息从环境到系统的回流为特征,因此是研究量子信息协议的性能和鲁棒性的重要方面。在这项工作中,我们通过度量量子品质因数的单调性的分解来探索非马尔可夫性,这种质量因数是基于系统一部分的局部unit演化获得的最小量子Fisher信息,并且可以解释为纠缠以外的量子相关性的量词。我们在两个相关示例中研究了我们提出的非马尔可夫性指标。首先,通过应用JamiołkowskiChoi同构,我们考虑了单方相移通道在最大纠缠二量子位状态上的作用。我们观察到,拟议的措施与使用其他方法基于动力学可除性,可区分性和量子互信息的单调性分解定义的已建立的非马尔可夫性量词一致。此外,在局部单方振幅阻尼通道的作用下,我们考虑了两个量子位的Werner态的动力学,并观察到,量子干涉光功率的非单调演化比相应的纠缠更健壮,可以捕获纠缠。与非马尔可夫过程有关的量子信息的回流。讨论了非马尔可夫性在量子计量学中的作用以及对连续变量系统的可能扩展。

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