English

Rotating Hayward's regular black hole as particle accelerator

General Relativity and Quantum Cosmology 2015-06-11 v2

Abstract

Recently, Ban\~{a}dos, Silk and West (BSW) demonstrated that the extremal Kerr black hole can act as a particle accelerator with arbitrarily high center-of-mass energy (ECME_{CM}) when the collision takes place near the horizon. The rotating Hayward's regular black hole, apart from Mass (MM) and angular momentum (aa), has a new parameter gg (g>0g>0 is a constant) that provides a deviation from the Kerr black hole. We demonstrate that for each gg, with M=1M=1, there exist critical aEa_{E} and rHEr_{H}^{E}, which corresponds to a regular extremal black hole with degenerate horizon, and aEa_{E} decreases and rHEr_{H}^{E} increases with increase in gg. While a<aEa<a_{E} describe a regular non-extremal black hole with outer and inner horizons. We apply BSW process to the rotating Hayward's regular black hole, for different gg, and demonstrate numerically that ECME_{CM} diverges in the vicinity of the horizon for the extremal cases, thereby suggesting that a rotating regular black hole can also act as a particle accelerator and thus in turn may provide a suitable framework for Plank-scale physics. For a non-extremal case, there always exist a finite upper bound of ECME_{CM}, which increases with deviation parameter gg.

Keywords

Cite

@article{arxiv.1503.08553,
  title  = {Rotating Hayward's regular black hole as particle accelerator},
  author = {Muhammed Amir and Sushant G. Ghosh},
  journal= {arXiv preprint arXiv:1503.08553},
  year   = {2015}
}

Comments

10 pages, 10 figures, 4 tables, accepted to be published in Journal of High Energy Physics

R2 v1 2026-06-22T09:05:15.749Z