具有八个电荷和磁荷的黑洞的 SLOCC 和 LU 分类

IF 1.3 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY
Dafa Li, Maggie Cheng, Xiangrong Li, Shuwang Li
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引用次数: 0

摘要

在Kallosh和Linde(Phys. Rev. D 73, 104033 2006)一文中,Kallosh和Linde讨论了黑洞的SLOCC分类。然而,他们并没有给出黑洞 SLOCC 分类的标准。此外,过去也没有研究过黑洞的 LU 分类。本文将同时考虑具有四个整数电荷 \(q_{i}\) 和四个整数磁荷 \(p^{i}\), \(i=0,1,2,3\) 的 STU 黑洞的 SLOCC 和 LU 分类。当且仅当两个具有八个电荷的 STU 黑洞的三个量子比特的相应状态是 SLOCC(LU)等效的时候,它们才被认为是 SLOCC(LU)等效的。根据这个定义,我们分别给出了八电荷 STU 黑洞在 SLOCC 和 LU 下的分类标准。我们将通过三个量子比特的 SLOCC 和 LU 纠缠分类来研究黑洞的分类。然后,我们会找出一组与三个量子比特的状态 W 相对应的黑洞,因为它具有最大的平均冯-诺依曼纠缠熵。通过冯-诺依曼纠缠熵,我们将与 GHZ SLOCC 类纯态相对应的 STU 黑洞划分为 LU 下的五个家族。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SLOCC and LU Classification of Black Holes with Eight Electric and Magnetic Charges

In Kallosh and Linde (Phys. Rev. D 73, 104033 2006), Kallosh and Linde discussed the SLOCC classification of black holes. However, the criteria for the SLOCC classification of black holes have not been given. In addition, the LU classification of black holes has not been studied in the past. In this paper we will consider both SLOCC and LU classification of the STU black holes with four integer electric charges \(q_{i} \) and four integer magnetic charges \(p^{i}\), \(i=0,1,2,3\). Two STU black holes with eight charges are considered SLOCC (LU) equivalent if and only if their corresponding states of three qubits are SLOCC (LU) equivalent. Under this definition, we give criteria for the classification of the eight-charge STU black holes under SLOCC and under LU, respectively. We will study the classification of the black holes via the classification of SLOCC and LU entanglement of three qubits. We then identify a set of black holes corresponding to the state W of three qubits, which is of interest since it has the maximal average von Neumann entropy of entanglement. Via von Neumann entanglement entropy, we partition the STU black holes corresponding to pure states of GHZ SLOCC class into five families under LU.

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来源期刊
CiteScore
2.50
自引率
21.40%
发文量
258
审稿时长
3.3 months
期刊介绍: International Journal of Theoretical Physics publishes original research and reviews in theoretical physics and neighboring fields. Dedicated to the unification of the latest physics research, this journal seeks to map the direction of future research by original work in traditional physics like general relativity, quantum theory with relativistic quantum field theory,as used in particle physics, and by fresh inquiry into quantum measurement theory, and other similarly fundamental areas, e.g. quantum geometry and quantum logic, etc.
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