Title of article :
Holographic principle bounds on primordial black-hole abundances
Author/Authors :
Horvath، J E نويسنده , , Custodio، P S نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
-812
From page :
813
To page :
0
Abstract :
The generalized second law of thermodynamics and the holographic principle are combined to obtain the maximum mass of black holes formed inside a static spherical box of size R filled with radiation at initial temperature Ti. The final temperature after the formation of black holes is evaluated, and we show that a critical threshold exists for the radiation to be fully consumed by the process. We next argue that if some form of holographic principle holds, upper bounds to the mass density of PBHs formed in the early universe may be obtained. The limits are worked out for inflationary and non-inflationary cosmological models. This method is independent of the known limits based on the background fluxes (from cosmic rays, radiation and other forms of energy) and applies to potentially important epochs of PBH formation, resulting in quite strong constraints on (OMEGA)pbh.
Keywords :
lasers , laser optics , Infrared , far-infrared lasers , Remote sensing , Combustion diagnostics , diode lasers , Spectroscopy , Absorption
Journal title :
CLASSICAL AND QUANTUM GRAVITY
Serial Year :
2003
Journal title :
CLASSICAL AND QUANTUM GRAVITY
Record number :
72893
Link To Document :
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