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二元克尔黑洞的寂静

Silence of Binary Kerr Black Holes.

作者信息

Aoude Rafael, Chung Ming-Zhi, Huang Yu-Tin, Machado Camila S, Tam Man-Kuan

机构信息

PRISMA+ Cluster of Excellence and Mainz Institute for Theoretical Physics, Johannes Gutenberg-Universität Mainz, 55099 Mainz, Germany.

Department of Physics and Astronomy, National Taiwan University, Taipei 10617, Taiwan.

出版信息

Phys Rev Lett. 2020 Oct 30;125(18):181602. doi: 10.1103/PhysRevLett.125.181602.

Abstract

A nontrivial S matrix generally implies a production of entanglement: starting with an incoming pure state, the scattering generally returns an outgoing state with nonvanishing entanglement entropy. It is then interesting to ask if there exists a nontrivial S matrix that generates no entanglement. In this Letter, we argue that the answer is the S-matrix for the scattering of classical black holes. We study the spin entanglement in the scattering of arbitrary spinning particles. Augmenting the S-matrix with Thomas-Wigner rotation factors, we derive the entanglement entropy from the gravitational induced 2→2 amplitude. In the Eikonal limit, we find that the relative entanglement entropy, defined here as the difference between the entanglement entropy of the in and out states, is nearly zero for minimal coupling irrespective of the in state and increases significantly for any nonvanishing spin multipole moments. This finding suggests that minimal couplings of spinning particles, whose classical limit corresponds to a Kerr black hole, have the unique feature of generating near zero entanglement.

摘要

一个非平凡的S矩阵通常意味着纠缠的产生:从一个入射纯态开始,散射通常会返回一个具有非零纠缠熵的出射态。那么有趣的是,是否存在一个不产生纠缠的非平凡S矩阵。在这篇快报中,我们认为答案是经典黑洞散射的S矩阵。我们研究了任意自旋粒子散射中的自旋纠缠。用托马斯 - 维格纳旋转因子扩充S矩阵,我们从引力诱导的2→2振幅中导出纠缠熵。在程函近似极限下,我们发现,这里定义为入射态和出射态纠缠熵之差的相对纠缠熵,对于最小耦合而言,无论入射态如何,几乎为零,而对于任何非零自旋多极矩则会显著增加。这一发现表明,自旋粒子的最小耦合,其经典极限对应于克尔黑洞,具有产生近零纠缠的独特特征。

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