arXiv · 2604.23501
Quantum average correlation based on average coherence
Abstract
This paper studies the quantification and structural properties of quantum average correlation based on average coherence. Motivated by two mathematically equivalent approaches to define average coherence: one by averaging over complete sets of mutually unbiased bases, and the other by integrating over all orthogonal bases under the Haar measure, we define an average correlation for bipartite systems as the difference between global and local skew information. This correlation measure is shown to satisfy essential properties including non negativity, contractivity under local quantum channels, and local unitary invariance. We further prove the equivalence between the average correlation defined via mutually unbiased bases and that defined via unitary groups. Finally, we derive a complementarity relation that connects wave-particle duality with the average correlation between a system and its environment.
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Xiaoyu Ma, Qing-Hua Zhang, Cong Xu. 2026-04-26. Quantum average correlation based on average coherence. https://doi.org/10.1088/1674-1056%2Fae43d2
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