Genuine N-partite entanglement and distributed relationships in the background of dilation black holes

Abstract With the complexity of information tasks, the bipartite and tripartite entanglement can no longer meet our needs, and we need more entangled particles to process relativistic quantum information. In this paper, we study the genuine N-partite entanglement and distributed relationships for Di...

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Main Authors: Shu-Min Wu, Yu-Tong Cai, Wen-Jing Peng, Hao-Sheng Zeng
Format: Article
Language:English
Published: SpringerOpen 2022-05-01
Series:European Physical Journal C: Particles and Fields
Online Access:https://doi.org/10.1140/epjc/s10052-022-10368-z
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author Shu-Min Wu
Yu-Tong Cai
Wen-Jing Peng
Hao-Sheng Zeng
author_facet Shu-Min Wu
Yu-Tong Cai
Wen-Jing Peng
Hao-Sheng Zeng
author_sort Shu-Min Wu
collection DOAJ
description Abstract With the complexity of information tasks, the bipartite and tripartite entanglement can no longer meet our needs, and we need more entangled particles to process relativistic quantum information. In this paper, we study the genuine N-partite entanglement and distributed relationships for Dirac fields in the background of dilaton black holes. We present the general analytical expression including all physically accessible and inaccessible entanglement in curved spacetime. We find that the accessible N-partite entanglement exhibits irreversible decoherence as the increase of black hole’s dilaton, and on the other hand the inaccessible N-partite entanglement increases from zero monotonically or non-monotonically, depending on the relative numbers of the accessible to the inaccessible modes, which forms a sharp contrast with the cases of bipartite and tripartite entanglement where the inaccessible entanglement increase only monotonically. We also find two distributed relationships between accessible and inaccessible N-partite entanglement in curved spacetime. The results give us a new understanding of the Hawking radiation.
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spelling doaj.art-b4daa71208804f4bb0be525415adda552022-12-22T02:54:10ZengSpringerOpenEuropean Physical Journal C: Particles and Fields1434-60522022-05-018251910.1140/epjc/s10052-022-10368-zGenuine N-partite entanglement and distributed relationships in the background of dilation black holesShu-Min Wu0Yu-Tong Cai1Wen-Jing Peng2Hao-Sheng Zeng3Department of Physics, Liaoning Normal UniversityDepartment of Physics, Liaoning Normal UniversityDepartment of Physics, Hunan Normal UniversityDepartment of Physics, Hunan Normal UniversityAbstract With the complexity of information tasks, the bipartite and tripartite entanglement can no longer meet our needs, and we need more entangled particles to process relativistic quantum information. In this paper, we study the genuine N-partite entanglement and distributed relationships for Dirac fields in the background of dilaton black holes. We present the general analytical expression including all physically accessible and inaccessible entanglement in curved spacetime. We find that the accessible N-partite entanglement exhibits irreversible decoherence as the increase of black hole’s dilaton, and on the other hand the inaccessible N-partite entanglement increases from zero monotonically or non-monotonically, depending on the relative numbers of the accessible to the inaccessible modes, which forms a sharp contrast with the cases of bipartite and tripartite entanglement where the inaccessible entanglement increase only monotonically. We also find two distributed relationships between accessible and inaccessible N-partite entanglement in curved spacetime. The results give us a new understanding of the Hawking radiation.https://doi.org/10.1140/epjc/s10052-022-10368-z
spellingShingle Shu-Min Wu
Yu-Tong Cai
Wen-Jing Peng
Hao-Sheng Zeng
Genuine N-partite entanglement and distributed relationships in the background of dilation black holes
European Physical Journal C: Particles and Fields
title Genuine N-partite entanglement and distributed relationships in the background of dilation black holes
title_full Genuine N-partite entanglement and distributed relationships in the background of dilation black holes
title_fullStr Genuine N-partite entanglement and distributed relationships in the background of dilation black holes
title_full_unstemmed Genuine N-partite entanglement and distributed relationships in the background of dilation black holes
title_short Genuine N-partite entanglement and distributed relationships in the background of dilation black holes
title_sort genuine n partite entanglement and distributed relationships in the background of dilation black holes
url https://doi.org/10.1140/epjc/s10052-022-10368-z
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