English

More on the upper bound of holographic n-partite information

High Energy Physics - Theory 2025-03-27 v2

Abstract

We show that there exists a huge amount of multipartite entanglement in holography by studying the upper bound for holographic nn-partite information InI_n that n1n-1 fixed boundary subregions participate. We develop methods to find the nn-th region EE that makes InI_n reach the upper bound. Through the explicit evaluation, it is shown that InI_n, an IR term without UV divergence, could diverge when the number of intervals or strips in region EE approaches infinity. At this upper bound configuration, we could argue that InI_n fully comes from the nn-partite global quantum entanglement. Our results indicate: fewer-partite entanglement in holography emerges from more-partite entanglement; n1n-1 distant local subregions are highly nn-partite entangling. Moreover, the relationship between the convexity of a boundary subregion and the multipartite entanglement it participates, and the difference between multipartite entanglement structure in different dimensions are revealed as well.

Keywords

Cite

@article{arxiv.2411.19207,
  title  = {More on the upper bound of holographic n-partite information},
  author = {Xin-Xiang Ju and Wen-Bin Pan and Ya-Wen Sun and Yuan-Tai Wang and Yang Zhao},
  journal= {arXiv preprint arXiv:2411.19207},
  year   = {2025}
}

Comments

63 pages, 25 figures, v2: minor revision, references added