minimal length effects on tunnelling from spherically symmetric black holes

Clicks: 130
ID: 216044
2015
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Ranked #45 of 103 articles by views in biotechnology reports (amsterdam, netherlands)

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Abstract
We investigate effects of the minimal length on quantum tunnelling from spherically symmetric black holes using the Hamilton-Jacobi method incorporating the minimal length. We first derive the deformed Hamilton-Jacobi equations for scalars and fermions, both of which have the same expressions. The minimal length correction to the Hawking temperature is found to depend on the black hole’s mass and the mass and angular momentum of emitted particles. Finally, we calculate a Schwarzschild black hole's luminosity and find the black hole evaporates to zero mass in infinite time.
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mu2015advancesminimal Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Benrong Mu;Peng Wang;Haitang Yang
Journal biotechnology reports (amsterdam, netherlands)
Year 2015
DOI
10.1155/2015/898916
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