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Charged Spinning Black Holes as Particle Accelerators

High Energy Physics - Theory 2010-11-19 v4 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology

Abstract

It has recently been pointed out that the spinning Kerr black hole with maximal spin could act as a particle collider with arbitrarily high center-of-mass energy. In this paper, we will extend the result to the charged spinning black hole, the Kerr-Newman black hole. The center-of-mass energy of collision for two uncharged particles falling freely from rest at infinity depends not only on the spin aa but also on the charge QQ of the black hole. We find that an unlimited center-of-mass energy can be approached with the conditions: (1) the collision takes place at the horizon of an extremal black hole; (2) one of the colliding particles has critical angular momentum; (3) the spin aa of the extremal black hole satisfies 13aM1\frac{1}{\sqrt{3}}\leq \frac{a}{M}\leq 1, where MM is the mass of the Kerr-Newman black hole. The third condition implies that to obtain an arbitrarily high energy, the extremal Kerr-Newman black hole must have a large value of spin, which is a significant difference between the Kerr and Kerr-Newman black holes. Furthermore, we also show that, for a near-extremal black hole, there always exists a finite upper bound for center-of-mass energy, which decreases with the increase of the charge QQ.

Keywords

Cite

@article{arxiv.1006.1056,
  title  = {Charged Spinning Black Holes as Particle Accelerators},
  author = {Shao-Wen Wei and Yu-Xiao Liu and Heng Guo and Chun-E Fu},
  journal= {arXiv preprint arXiv:1006.1056},
  year   = {2010}
}

Comments

14 pages, 1 figure, conclusions corrected, to appear in PRD

R2 v1 2026-06-21T15:32:24.966Z