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Conditional mutual information and quantum steering

机译:条件相互信息和量子转向

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Quantum steering has recently been formalized in the framework of a resource theory of steering, and several quantifiers have already been introduced. Here, we propose an information-theoretic quantifier for steering called intrinsic steerability, which uses conditional mutual information to measure the deviation of a given assemblage from one having a local-hidden-state model. We thus relate conditional mutual information to quantum steering and introduce monotones that satisfy certain desirable properties. The idea behind the quantifier is to suppress the correlations that can be explained by an inaccessible quantum system and then quantify the remaining intrinsic correlations. A variant of the intrinsic steerability finds operational meaning as the classical communication cost of sending the measurement choice and outcome to an eavesdropper who possesses a purifying system of the underlying bipartite quantum state that is being measured.
机译:Quantum转向最近在转向资源理论的框架中正式化,并且已经引入了几种量词。 这里,我们提出了一种用于转向的信息定理量化,用于称为内部测量性,其使用条件互信息来测量给定的组合的偏差,从具有局部隐藏状态模型的一个。 因此,我们将条件互信息与量子转向相关,并引入满足某些理想性质的单点。 量化器背后的想法是抑制可以通过无法访问的量子系统解释的相关性,然后量化剩余的内在相关性。 内在轨迹的变型发现运营含义,作为向具有正在测量的底层二分辨率状态的净化系统的窃听器发送测量选择和结果的经典通信成本。

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