English

Dilatonic dyon black hole solutions

General Relativity and Quantum Cosmology 2015-06-15 v2

Abstract

Dilatonic black hole dyon solutions with arbitrary dilatonic coupling constant λ0\lambda \neq 0 and canonical sign ε=+1\varepsilon = +1 for scalar field kynetic term are considered. These solutions are defined up to solutions of two master equations for moduli funtions. For λ21/2\lambda^2 \neq 1/2 the solutions are extended to ε=±1\varepsilon = \pm 1, where ε=1\varepsilon = -1 corresponds to ghost (phantom) scalar field. Some physical parameters of the solutions: gravitational mass, scalar charge, Hawking temperature, black hole area entropy and parametrized post-Newtonian (PPN) parameters β\beta and γ\gamma are obtained. It is shown that PPN parameters do not depend on scalar field coupling λ\lambda and ε\varepsilon. Two group of bounds on gravitational mass and scalar charge (for fixed and arbitrary extremality parameter μ>0\mu >0) are found by using a certain conjecture on parameters of solutions when 1+2λ2ε>01 +2 \lambda^2 \varepsilon > 0. These bounds are verified numerically for certain examples. By product we are led to well-known lower bound on mass which was obtained earlier by Gibbons, Kastor, London, Townsend and Traschen by using spinor techniques.

Keywords

Cite

@article{arxiv.1504.07657,
  title  = {Dilatonic dyon black hole solutions},
  author = {M. E. Abishev and K. A. Boshkayev and V. D. Dzhunushaliev and V. D. Ivashchuk},
  journal= {arXiv preprint arXiv:1504.07657},
  year   = {2015}
}

Comments

20 pages, 2 figures, 2 tables, Latex. Revised version: 6 refs., 3 remarks, a paragraph in Conclusion and several sentences or phrases are added; in Sect. 5 numerics are replaced to the end

R2 v1 2026-06-22T09:24:36.973Z