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Thermodynamic description of non-Markovian information flux of nonequilibrium open quantum systems

机译:非Markovian Notibibium Open Open Quantum System的无马克洛夫信息通量的热力学描述

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摘要

One of the fundamental issues in the field of open quantum systems is the classification and quantification of non-Markovianity. In the contest of quantity-based measures of non-Markovianity, the intuition of non- Markovianity in terms of information backflow is widely discussed. However, it is not easy to characterize the information flux for a given system state and show its connection to non-Markovianity. Here, by using the concepts from thermodynamics and information theory, we discuss a potential definition of information flux of an open quantum system, valid for static environments. We present a simple protocol to show how a system attempts to share information with its environment and how it builds up system-environment correlations. We also show that the information returned from the correlations characterizes the non-Markovianity and a hierarchy of indivisibility of the system dynamics.
机译:开放量子系统领域的一个基本问题是非市场的分类和量化。 在非市场数量的基于数量的非市场措施的比赛中,广泛讨论了信息回流方面的非市场的直觉。 但是,对于给定系统状态的信息通量并不容易,并显示其与非市场性的连接。 这里,通过使用热力学和信息理论的概念,我们讨论了开放量子系统信息通量的潜在定义,适用于静态环境。 我们展示了一个简单的协议,以展示系统如何尝试与其环境共享信息以及它如何构建系统环境相关性。 我们还表明,从相关性返回的信息表征了系统动态的非市场性和不可分割的层次结构。

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