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Tunneling of Massive Vector Particles under the Influence of Quantum Gravity

General Physics 2019-12-03 v1

Abstract

This paper is devoted to investigate charged vector particles tunneling via horizons of a pair of accelerating rotating charged NUT black hole under the influence of quantum gravitational effects. For this purpose, we use the modified Proca equation incorporating generalized uncertainty principle. Using the WKB approximation to the field equation, we obtain a modified tunneling rate and the corresponding corrected Hawking temperature for this black hole. Moreover, we analyze the graphical behavior of corrected Hawking temperature THT'_{H} with respect to the event horizon for the given black hole. By considering quantum gravitational effects on Hawking temperatures, we discuss the stability analysis of this black hole. For a pair of black holes, the temperature THT'_{H} increases with the increase in rotation parameters aa and ω\omega, correction parameter β\beta, black hole acceleration α\alpha and arbitrary parameter kk and decreases with the increase in electric ee and magnetic charges gg.

Keywords

Cite

@article{arxiv.1909.02405,
  title  = {Tunneling of Massive Vector Particles under the Influence of Quantum Gravity},
  author = {Wajiha Javed and Riasat Ali and Rimsha Babar and Ali Övgün},
  journal= {arXiv preprint arXiv:1909.02405},
  year   = {2019}
}

Comments

14 pages. Submitted to Chinese Physics C