Bosonic and fermionic mutual information of N-partite systems in dilaton black hole background

Fuente: arXiv
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Main Authors: Teng, Xiao-Wei, Xu, Rui-Yang, Yang, Hui-Chen, Wu, Shu-Min
Format: Preprint
Published: 2026
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author Teng, Xiao-Wei
Xu, Rui-Yang
Yang, Hui-Chen
Wu, Shu-Min
author_facet Teng, Xiao-Wei
Xu, Rui-Yang
Yang, Hui-Chen
Wu, Shu-Min
contents We investigate multipartite quantum correlations by analyzing the mutual information of N-partite states for both free bosonic and fermionic fields in the background of a Garfinkle-Horowitz-Strominger (GHS) dilaton black hole. Focusing on multipartite GHZ and W states, we examine how the Hawking effect influences the N-partite mutual information when one observer hovers near the event horizon while the remaining observers stay in the asymptotically flat region. By tracing over the inaccessible modes inside the event horizon, we derive analytical expressions for the N-partite mutual information in dilaton spacetime for both bosonic and fermionic fields. Our results show that fermionic mutual information is larger than its bosonic counterpart under the influence of the dilaton black hole, whereas the fermionic relative entropy of coherence (REC) is smaller than the bosonic REC. Moreover, the mutual information of GHZ states is consistently larger than that of W states, while the REC of GHZ states is smaller than that of W states in curved spacetime. These findings indicate that the choice of quantum resources should be tailored to the particle species and state structure in relativistic quantum information tasks to optimize their operational efficiency.
format Preprint
id arxiv_https___arxiv_org_abs_2603_18439
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Bosonic and fermionic mutual information of N-partite systems in dilaton black hole background
Teng, Xiao-Wei
Xu, Rui-Yang
Yang, Hui-Chen
Wu, Shu-Min
General Relativity and Quantum Cosmology
Quantum Physics
We investigate multipartite quantum correlations by analyzing the mutual information of N-partite states for both free bosonic and fermionic fields in the background of a Garfinkle-Horowitz-Strominger (GHS) dilaton black hole. Focusing on multipartite GHZ and W states, we examine how the Hawking effect influences the N-partite mutual information when one observer hovers near the event horizon while the remaining observers stay in the asymptotically flat region. By tracing over the inaccessible modes inside the event horizon, we derive analytical expressions for the N-partite mutual information in dilaton spacetime for both bosonic and fermionic fields. Our results show that fermionic mutual information is larger than its bosonic counterpart under the influence of the dilaton black hole, whereas the fermionic relative entropy of coherence (REC) is smaller than the bosonic REC. Moreover, the mutual information of GHZ states is consistently larger than that of W states, while the REC of GHZ states is smaller than that of W states in curved spacetime. These findings indicate that the choice of quantum resources should be tailored to the particle species and state structure in relativistic quantum information tasks to optimize their operational efficiency.
title Bosonic and fermionic mutual information of N-partite systems in dilaton black hole background
topic General Relativity and Quantum Cosmology
Quantum Physics
url https://arxiv.org/abs/2603.18439