arXiv Analytics

Sign in

arXiv:1909.06661 [quant-ph]AbstractReferencesReviewsResources

Mutual Information is not a Reliable Measure for Variations in Total Correlations

S. Alipour, S. Tuohino, A. T. Rezakhani, T. Ala-Nissila

Published 2019-09-14Version 1

Correlations disguised in various forms underlie a host of important phenomena in classical and quantum systems, such as information and energy exchanges. The quantum mutual information and the norm of the correlation matrix are both considered as proper measures of total correlations. We demonstrate that, when applied to the same system, these two measures can actually show significantly different behavior except at least in two limiting cases: when there are no correlations and when there is maximal quantum entanglement. We further quantify the discrepancy by providing analytic formulas for time derivatives of the measures for an interacting bipartite system evolving unitarily. We argue that to properly account for correlations, one should consider the full information provided by the correlation matrix (and reduced states of the subsystems). Scalar quantities such as the norm of the correlation matrix or the quantum mutual information can only capture a part of the complex features of correlations. As a concrete example, we show that in describing heat exchange associated with correlations, neither of these quantities can fully capture the underlying physics.

Related articles: Most relevant | Search more
arXiv:quant-ph/0105028 (Published 2001-05-08)
Classical, quantum and total correlations
arXiv:2412.08000 [quant-ph] (Published 2024-12-11)
Axiomatic approach to measures of total correlations
arXiv:1812.01449 [quant-ph] (Published 2018-12-04)
On decomposable correlation matrices