Maximizing the divergence from a hierarchical model of quantum states
Mathematical Physics
2016-05-17 v3 math.MP
Quantum Physics
Abstract
We study many-party correlations quantified in terms of the Umegaki relative entropy (divergence) from a Gibbs family known as a hierarchical model. We derive these quantities from the maximum-entropy principle which was used earlier to define the closely related irreducible correlation. We point out differences between quantum states and probability vectors which exist in hierarchical models, in the divergence from a hierarchical model and in local maximizers of this divergence. The differences are, respectively, missing factorization, discontinuity and reduction of uncertainty. We discuss global maximizers of the mutual information of separable qubit states.
Keywords
Cite
@article{arxiv.1406.0833,
title = {Maximizing the divergence from a hierarchical model of quantum states},
author = {Stephan Weis and Andreas Knauf and Nihat Ay and Ming-Jing Zhao},
journal= {arXiv preprint arXiv:1406.0833},
year = {2016}
}
Comments
18 pages, 1 figure, v2: improved exposition, v3: less typos