Hierarchy of Genuine Multipartite Quantum Correlations
Abstract
Classifying states which exhibiting different statistical correlations is among the most important problems in quantum information science and quantum many-body physics. In bipartite case, there is a clear hierarchy of states with different correlations: total correlation (T) discord (D) entanglement (E) steering (S) Bell~nonlocality (NL). However, very little is known about genuine multipartite correlations (GM) for both conceptual and technical difficulties. In this work, we show that, for any -partite qudit states, there also exist such a hierarchy: genuine multipartite total correlations (GMT) genuine multipartite discord (GMD) genuine multipartite entanglement (GME) genuine multipartite steering (GMS) genuine multipartite nonlocality (GMNL). Furthermore, by constructing precise states, we show that GMT, GME and GMS are inequivalent with each other, thus GMT GME GMS.
Cite
@article{arxiv.1711.04664,
title = {Hierarchy of Genuine Multipartite Quantum Correlations},
author = {Zhih-Ahn Jia and Rui Zhai and Shang Yu and Yu-Chun Wu and Guang-Can Guo},
journal= {arXiv preprint arXiv:1711.04664},
year = {2020}
}