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Maximum coherence under noisy channels

机译:嘈杂渠道下的最大连贯性

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For the well-known relative entropy of coherence (REC), a quantum state attains maximum coherence only in optimal bases, which are mutually unbiased bases to the eigenvectors of the given state. In this paper, we explore the conditions of obtaining the maximum of REC under noisy channels and explain the geometric significance of optimal basis form the viewpoint of the Bloch sphere. We also show that the eigenvectors of the state will remain constant throughout the whole process of evolution, as long as the effects of channels induce a synchronous change for the components of the initial state Bloch vector. Furthermore, as a special example, we investigate the dynamics of the maximum REC for any finite dimensional single quantum system under a depolarizing (DP) channel, and obtain an analytical form of maximum coherence for a d-dimensional maximally coherent state. Meanwhile, a concise analytical expression of maximum coherence for two classes of an N-qubit system under the DP channel is also provided.
机译:对于相干关系(REC)的众所周知的相对熵,量子状态仅在最佳碱基中达到最大的相干性,这与给定状态的特征向量相互不偏不偏。在本文中,我们探讨了在噪声通道下获得最大REC的条件,并解释了最佳基础的几何意义,从而形成了Bloch球体的观点。我们还表明,在整个进化过程中,该状态的特征向量将保持不变,只要通道的效果引起初始状态波纹载体的组件的同步变化。此外,作为一个特殊示例,我们研究了在去极化(DP)通道下的任何有限尺寸单量子系统的最大REC的动态,并获得D维最大相干状态的最大相干性的分析形式。同时,还提供了DP通道下两类N类N-QUBBit系统的最大相干性的简明分析表达。

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