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March 25, 2025Journal of High Energy Physics9 citationsOpen Access

More on the upper bound of holographic n-partite information

XJXin-Xiang JuUniversity of Chinese Academy of SciencesWPWenbin PanChina Aerospace Science and Industry Corporation (China)YSYa-Wen SunGuangzhou University of Chinese Medicine

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Abstract

A bstract We show that there exists a huge amount of multipartite entanglement in holography by studying the upper bound for holographic n -partite information I n that n − 1 fixed boundary subregions participate. We develop methods to find the n -th region E that makes I n reach the upper bound. Through the explicit evaluation, it is shown that I n , an IR term without UV divergence, could diverge when the number of intervals or strips in region E approaches infinity. At this upper bound configuration, we could argue that I n fully comes from the n -partite global quantum entanglement. Our results indicate: fewer-partite entanglement in holography emerges from more-partite entanglement; n − 1 distant local subregions are highly n -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.

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Cite This Study

Ju et al. (2025) studied this question.

synapsesocial.com/papers/69db0fe30d8d6ef495a3cb38https://doi.org/10.1007/jhep03(2025)184
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