AbstractHawking radiation has thermal spectrum corresponding to the temperature TH=(8πM)−1, where M is the mass (energy) of the black hole. Corrections to the Hawking radiation spectrum were discovered by Kraus and Wilczek (1995) and Parikh and Wilczek (2000). Here I show that these corrections follow directly from the basic principles of thermodynamics and statistical mechanics. In essence, it is the Boltzmann factor that ought to be corrected; corrections to the Hawking (or any other) radiation spectrum then follow necessarily
Planck-scale corrections to the black-hole radiation spectrum in the Parikh-Wilczek tunneling framew...
We study the perception of the radiation phenomena of Hawking radiation and Unruh effect by using tw...
This work explores the role of thermodynamic fluctuations in the two parameter Hawking radiating bla...
AbstractHawking radiation has thermal spectrum corresponding to the temperature TH=(8πM)−1, where M ...
Hawking radiation has thermal spectrum corresponding to the temperature <math altimg="si1.gif" xmlns...
Hawking radiation is one of the cores in modern gratitational theory. Several articles have calculat...
Generalizing the method proposed by Damour-Ruffini for discussing the Hawking radiation of a black h...
In our study of the validity of Hawking’s predicted radiation temperature of a black-hole, we found ...
We study the Hawking radiation in an analogue black hole, in which sound plays the role of light.&nb...
Area spectrum of black holes has been obtained via various methods such as quasinormal modes, adiaba...
The tunnelling mechanism is today considered a popular and widely used method in describing Hawking ...
In this article, we explore an alternative derivation of Hawking radiation. Instead of the field-the...
It has been observed that for black holes in certain family of Horndeski gravity theories Wald's ent...
AbstractWe show that the recent tunneling formulas for black hole radiation in static, spherically s...
Considering energy conservation and the back reaction of radiating particles to the spacetime, we in...
Planck-scale corrections to the black-hole radiation spectrum in the Parikh-Wilczek tunneling framew...
We study the perception of the radiation phenomena of Hawking radiation and Unruh effect by using tw...
This work explores the role of thermodynamic fluctuations in the two parameter Hawking radiating bla...
AbstractHawking radiation has thermal spectrum corresponding to the temperature TH=(8πM)−1, where M ...
Hawking radiation has thermal spectrum corresponding to the temperature <math altimg="si1.gif" xmlns...
Hawking radiation is one of the cores in modern gratitational theory. Several articles have calculat...
Generalizing the method proposed by Damour-Ruffini for discussing the Hawking radiation of a black h...
In our study of the validity of Hawking’s predicted radiation temperature of a black-hole, we found ...
We study the Hawking radiation in an analogue black hole, in which sound plays the role of light.&nb...
Area spectrum of black holes has been obtained via various methods such as quasinormal modes, adiaba...
The tunnelling mechanism is today considered a popular and widely used method in describing Hawking ...
In this article, we explore an alternative derivation of Hawking radiation. Instead of the field-the...
It has been observed that for black holes in certain family of Horndeski gravity theories Wald's ent...
AbstractWe show that the recent tunneling formulas for black hole radiation in static, spherically s...
Considering energy conservation and the back reaction of radiating particles to the spacetime, we in...
Planck-scale corrections to the black-hole radiation spectrum in the Parikh-Wilczek tunneling framew...
We study the perception of the radiation phenomena of Hawking radiation and Unruh effect by using tw...
This work explores the role of thermodynamic fluctuations in the two parameter Hawking radiating bla...