Black Hole Radiation with Modified Dispersion Relation in Tunneling Paradigm: Static Frame
arXiv:1505.03045 · doi:10.1016/j.nuclphysb.2017.06.022
Abstract
Due to the exponential high gravitational red shift near the event horizon of a black hole, it might appears that the Hawking radiation would be highly sensitive to some unknown high energy physics. To study possible deviations from the Hawking's prediction, the dispersive field theory models have been proposed, following the Unruh's hydrodynamic analogue of a black hole radiation. In the dispersive field theory models, the dispersion relations of matter fields are modified at high energies, which leads to modifications of equations of motion. In this paper, we use the Hamilton-Jacobi method to investigate the dispersive field theory models. The preferred frame is the static frame of the black hole. The dispersion relation adopted agrees with the relativistic one at low energies but is modified near the Planck mass . We calculate the corrections to the Hawking temperature for massive and charged particles to and massless and neutral particles to all orders. Our results suggest that the thermal spectrum of radiations near horizon is robust, e.g. corrections to the Hawking temperature are suppressed by . After the spectrum of radiations near the horizon is obtained, we use the brick wall model to compute the thermal entropy of a massless scalar field near the horizon of a 4D spherically symmetric black hole. We find that the leading term of the entropy depends on how the dispersion relations of matter fields are modified, while the subleading logarithmic term does not. Finally, the luminosities of black holes are computed by using the geometric optics approximation.
49pages, 2 figures; updated to match journal version
References in corpus (17)
- Tunnelling, Temperature and Taub-NUT Black Holes
- Quantum Tunneling and Back Reaction
- Temporal contribution to gravitational WKB-like calculations
- Subtleties in the quasi-classical calculation of Hawking radiation
- Hawking temperature from tunnelling formalism
- Black/White hole radiation from dispersive theories
- Remarks on Hawking radiation as tunneling from the BTZ black holes
- Problems with Tunneling of Thin Shells from Black Holes
- Entropy of the Schwarzschild black hole to all orders in the Planck length
- Effects of quantum gravity on black holes
- Modified dispersion relations in extra dimensions
- Exact Hawking Radiation of Scalars, Fermions, and Bosons Using the Tunneling Method Without Back-Reaction
- Minimal Length Effects on Tunnelling from Spherically Symmetric Black Holes
- Remarks on remnants by fermions' tunnelling from black strings
- Black Hole Radiation with Modified Dispersion Relation in Tunneling Paradigm: Free-fall Frame
- Minimal Length Effects on Entanglement Entropy of Spherically Symmetric Black Holes in Brick Wall Model
- Tunneling approach and thermality in dispersive models of analogue gravity
Cited by in corpus (11)
- Thermodynamics and Weak Cosmic Censorship Conjecture of 4D Gauss-Bonnet-Maxwell Black Holes via Charged Particle Absorption
- Thermodynamics and Luminosities of Rainbow Black Holes
- Thermodynamics and Weak Cosmic Censorship Conjecture in Nonlinear Electrodynamics Black Holes via Charged Particle Absorption
- A first step towards the inflationary trans-planckian problem treatment in Loop Quantum Cosmology
- Validity of Thermodynamic Laws and Weak Cosmic Censorship for AdS Black Holes and Black Holes in a Cavity
- Black Hole Radiation with Modified Dispersion Relation in Tunneling Paradigm: Free-fall Frame
- Gravitational Analysis of Einstein-Non-Linear-Maxwell-Yukawa Black Hole under the Effect of Newman-Janis Algorithm
- Free-fall Rainbow BTZ Black Hole
- Loop Quantum Cosmology with a noncommutative quantum deformed photon gas
- Thermodynamics and Phase transition of Schwarzschild black hole in Gravity's Rainbow
- WKB Approximation for a Deformed Schrodinger-like Equation and its Applications to Quasinormal Modes of Black Holes and Quantum Cosmology