English

Cosmic Censorship Conjecture violation: A semiclassical approach

General Relativity and Quantum Cosmology 2020-07-22 v1

Abstract

The Cosmic Censorship Conjecture (CCC) states that every singularity (except the cosmological one) must appear "dressed" in the universe. This statement was introduced by Roger Penrose (Penrose, 1969), meaning that every singularity (except the Big Bang) in the universe must be hidden inside an Event Horizon. Mathematically, this is described by the inequality M2Q2+a2M^2 \geqslant Q^2 + a^2 (in geometrized unit system), with MM being the mass of the black hole, QQ its charge and a:=J/Ma := J/M its specific angular momentum. Essentially, this three quantities determines uniquely a black hole, as stated by the no-hair theorem. We study the emission probability of a massive (mwm_w) uncharged scalar wave packet, a semi-classical approximation for a particle, by a static, charged black hole. We show that for a few values of the mass M:=M+δM\mathcal{M} := M+\delta M (where MM is the fixed value for the mass and δM\delta M being a small variation to MM in the order of mwm_w) with different values for δM\delta M and fixed charge QQ for the black hole, the emission probability tends to zero once the Cosmic Censorship Conjecture is close to be violated, that is, when the emitted packet is such that the new quantity M:=Mmw\mathcal{M}' := \mathcal{M}-m_w would violate the inequality M>Q\mathcal{M}' > Q.

Keywords

Cite

@article{arxiv.2007.10601,
  title  = {Cosmic Censorship Conjecture violation: A semiclassical approach},
  author = {Rodrigo L. Fernandez},
  journal= {arXiv preprint arXiv:2007.10601},
  year   = {2020}
}

Comments

80 pages, 25 figures, accepted PhD Thesis (Instituto de F\'isica, UFRJ). Chapter 4 originated article published in arXiv:2007.06766