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Thermodynamic phase transition for Quintessence Dyonic Anti de Sitter Black Holes

General Physics 2020-01-27 v2

Abstract

We study thermodynamic of a dyonic AdS black hole surrounded by quintessence dark energy where negative cosmological constant of AdS space behaves as pressure of the black hole. We choose grand canonical ensemble of the black hole where its magnetic charge QMQ_M and electric potential ΦE\Phi_E are hold as constant. Our goal in this work is study physical effects of the magnetic charge and electric potential on the thermodynamic phase transition of the black hole in presence of quintessence dark energy. When barotropic index of the quintessence is ω=79\omega=-\frac{7}{9} we obtained that compressibility factor of the black hole reduces to Zc=38Z_c=\frac{3}{8} which corresponds to the Van der Waals fluid. We obtained analogy between the small/large black hole phase transition and liquid/gas phase transition of the Van der Waals fluid. Numerical calculations predict that the black hole may born plasmaplasma phase which is fourth different state of the matter which does not appear in the Van der Waals fluid.

Keywords

Cite

@article{arxiv.1808.09789,
  title  = {Thermodynamic phase transition for Quintessence Dyonic Anti de Sitter Black Holes},
  author = {Hossein Ghaffarnejad and Emad Yaraie and Mohammad Farsam},
  journal= {arXiv preprint arXiv:1808.09789},
  year   = {2020}
}

Comments

20 pages, 3 figures