English

Stimulated Black Hole Evaporation

General Physics 2016-04-01 v1

Abstract

Black holes are extreme expressions of gravity. Their existence is predicted by Einstein's theory of general relativity and is supported by observations. Black holes obey quantum mechanics and evaporate spontaneously. Here it is shown that a mass rate Rf3×108(M0/M)1/2R_f\sim 3\times 10^{-8} (M_0/M)^{1/2} M0M_0 yr1^{-1} onto the horizon of a black hole with mass MM (in units of solar mass M0M_0) stimulates a black hole into rapid evaporation. Specifically, 3M0\sim 3 M_0 black holes can emit a large fraction of their mass, and explode, in M/Rf3×107(M/M0)3/2M/R_f \sim 3\times 10^7 (M/M_0)^{3/2} yr. These stimulated black holes radiate a spectral line power P2×1039(M0/M)1/2P \sim 2\times 10^{39} (M_0/M)^{1/2} erg s1^{-1}, at a wavelength λ3×105(M/M0)\lambda \sim 3\times 10^5 (M/M_0) cm. This prediction can be observationally verified.

Keywords

Cite

@article{arxiv.1603.09733,
  title  = {Stimulated Black Hole Evaporation},
  author = {Marco Spaans},
  journal= {arXiv preprint arXiv:1603.09733},
  year   = {2016}
}

Comments

3 pages

R2 v1 2026-06-22T13:22:40.164Z