Quantum-corrected rotating acoustic black holes in Lorentz-violating background

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Abstract

In this paper we explore the effect of the generalized uncertainty principle and modified dispersion relation to compute Hawking radiation from a rotating acoustic black hole in the tunneling formalism by using the Wentzel-Kramers-Brillouin approximation applied to the Hamilton-Jacobi method. The starting point is to consider the planar acoustic black hole metric found in a Lorentz-violating Abelian Higgs model. In our analyzes we investigate quantum corrections for the Hawking temperature and entropy. A logarithmic correction and an extra term that depends on a conserved charge were obtained. We also have found that the changing in the Hawking temperature TH for a dispersive medium due to a Lorentz-violating background accounts for supersonic velocities in the general form (vg-vp)/vp=ΔTH/TH∼10-5 in Bose-Einstein-Condensate systems.

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Anacleto, M. A., Brito, F. A., Garcia, C. V., Luna, G. C., & Passos, E. (2019). Quantum-corrected rotating acoustic black holes in Lorentz-violating background. Physical Review D, 100(10). https://doi.org/10.1103/PhysRevD.100.105005

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