Tunneling of Massive Vector Particles from Types of BTZ-like Black Holes
arXiv:1910.07949 · doi:10.1140/epjp/i2019-12877-5
Abstract
In this paper, we analyze the Hawking radiation phenomenon for types of Banados-Teitelboim-Zanelli-like (BTZ-like) black holes. For this purpose, using the Hamilton-Jacobi method, we consider semi-classical WKB approximation to calculate the tunneling probabilities of massive boson particles. For these particles, we use the equation of motion for the Glashow-Weinberg-Salam model. Using quantum tunneling process of charged massive bossons, we compute the corresponding Hawking temperatures. Furthermore, we discuss the effects of rotation parameter on tunneling probability and temperature.
9 Pages. Published in EPJ Plus
References in corpus (13)
- Fermions Tunnelling from Black Holes
- Tunnelling, Temperature and Taub-NUT Black Holes
- Charged Fermions Tunnelling from Kerr-Newman Black Holes
- Dirac particles tunneling from BTZ black hole
- Corrected entropy of BTZ black hole in tunneling approach
- Thermodynamics of Rotating Charged Black Branes in Third Order Lovelock Gravity and the Counterterm Method
- Tunneling of Vector Particles from Lorentzian Wormholes in 3+1 Dimensions
- Hawking radiation from (2+1)-dimensional BTZ black holes
- Effects of quantum gravity on black holes
- The Effect of the Gauss-Bonnet term to Hawking Radiation from arbitrary dimensional Black Brane
- Hawking Radiation via Tunneling from Hot NUT-Kerr-Newman-Kasuya Spacetime
- Uninformed Hawking Radiation
- Vector particles tunneling from BTZ black holes