Charged particles' tunneling from a noncommutative charged black hole
arXiv:1004.1255 · doi:10.1142/S0217751X10051013
Abstract
We apply the tunneling process of charged massive particles through the quantum horizon of a Reissner-Nordstrom black hole in a new noncommutative gravity scenario. In this model, the tunneling amplitude on account of noncommutativity influences in the context of coordinate coherent states is modified. Our calculation points out that the emission rate satisfies the first law of black hole thermodynamics and is consistent with an underlying unitary theory.
14 pages, 2 figures, new references added, to appear in IJMPA
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