相干性-混合性交易

Qing-Hua Zhang, Shao-Ming Fei
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引用次数: 0

摘要

量子相干性是量子力学的基本特征,也是新兴量子资源理论不可或缺的组成部分。然而,在一般量子处理过程中,量子相干性受到环境噪声的严重限制,表现为量子系统信息的丢失。这种处理过程可以用相干性和混合性之间的权衡来描述。基于l2规范相干性、条件冯-诺依曼熵和维格纳-杨纳斯偏斜信息,我们推导出了量子态混合性对可实现量子相干性施加的与基础无关的约束,这些约束概括了先前的与基础有关的关系,为了解发生退相干的任意量子系统中存在的潜在相干性资源提供了基本见解,并量化了环境噪声对可提取相干性施加的内在限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coherence-mixedness trade-offs
Quantum coherence constitutes a foundational characteristic of quantum mechanics and is integral to emerging quantum resource theories. However, quantum coherence is severely restricted by environmental noise in general quantum processing, indicated by the loss of information of a quantum system. Such processing can be described by the trade-offs between the coherence and the mixedness. Based on the l2 norm coherence, conditional von Neumann entropy and Wigner-Yanase skew information, we derive basis-independent constraints on the attainable quantum coherence imposed by the mixedness of a quantum state, which generalize the prior basis-dependent relations, provide fundamental insights into the latent coherence resources present within arbitrary quantum systems that undergo decoherence and quantify the inherent limits on extractable coherence imposed by environmental noise.
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