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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Information-theoretical meaning of quantum-dynamical entropy - art. no. 052302
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Information-theoretical meaning of quantum-dynamical entropy - art. no. 052302

机译:量子动力学熵的信息论意义-艺术没有。 052302

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The theories of noncommutative dynamical entropy and quantum symbolic dynamics for quantum-dynamical systems are analyzed from the point of view of quantum information theory. Using a general quantum-dynamical system as a communication channel, one can define different classical capacities depending on the character of resources applied for encoding and decoding procedures and on the type of information sources. It is shown that for Bernoulli sources, the entanglement-assisted classical capacity, which is the largest one, is bounded from above by the quantum-dynamical entropy defined in terms of operational partitions of unity. Stronger results are proved for the particular class of quantum-dynamical systems-quantum Bernoulli shifts. Different classical capacities are exactly computed and the entanglement-assisted one is equal to the dynamical entropy in this case. [References: 16]
机译:从量子信息论的角度分析了量子动力学系统的非交换动力学熵和量子符号动力学理论。使用一般的量子动力学系统作为通信通道,可以根据应用于编码和解码过程的资源特征以及信息源的类型来定义不同的经典容量。结果表明,对于伯努利源来说,最大的纠缠辅助经典能力从上方受以统一操作分区定义的量子动力学熵的限制。对于特定类别的量子动力学系统-量子伯努利位移,证明了更强的结果。在这种情况下,精确计算出了不同的经典容量,并且纠缠辅助的容量等于动态熵。 [参考:16]

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