TY - JOUR
A2 - Vagenas, Elias C.
AU - Gecim, Ganim
AU - Sucu, Yusuf
PY - 2018
DA - 2018/03/06
TI - Quantum Gravity Effect on the Tunneling Particles from 2 + 1-Dimensional New-Type Black Hole
SP - 8728564
VL - 2018
AB - We investigate the generalized uncertainty principle (GUP) effect on the Hawking temperature for the 2 + 1-dimensional new-type black hole by using the quantum tunneling method for both the spin-1/2 Dirac and the spin-0 scalar particles. In computation of the GUP correction for the Hawking temperature of the black hole, we modified Dirac and Klein-Gordon equations. We observed that the modified Hawking temperature of the black hole depends not only on the black hole properties, but also on the graviton mass and the intrinsic properties of the tunneling particle, such as total angular momentum, energy, and mass. Also, we see that the Hawking temperature was found to be probed by these particles in different manners. The modified Hawking temperature for the scalar particle seems low compared with its standard Hawking temperature. Also, we find that the modified Hawking temperature of the black hole caused by Dirac particle’s tunneling is raised by the total angular momentum of the particle. It is diminishable by the energy and mass of the particle and graviton mass as well. These intrinsic properties of the particle, except total angular momentum for the Dirac particle, and graviton mass may cause screening for the black hole radiation.
SN - 1687-7357
UR - https://doi.org/10.1155/2018/8728564
DO - 10.1155/2018/8728564
JF - Advances in High Energy Physics
PB - Hindawi
KW -
ER -