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Quantum Gravity Corrections to Hawking Radiation via GUP
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In this paper we explore the effects of a Generalized Uncertainty Principle (GUP) on Schwarzschild black hole. In particular, we incorporate the effects of GUP into the Parikh-Wilczek tunneling process for Hawking radiation. To this effect, we observe that results obtained due to GUP correction resemble that of the Reissner-Nordstr\"{om} black hole, showing similarities to the nature of an electric charge. We also find that, within this framework, the emission is not purely thermal, thus addressing the information loss problem through the correlation function.
Forward citations
Cited by 2 Pith papers
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Stark Energy Shifts due to Quantum Gravity in RGUP Algebra
Applying the RGUP to the Stark effect yields beta-proportional energy shifts and an upper bound beta < 10^42 on the deformation parameter.
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Deformed algebraic structure of angular momenta: GUP perspective
The paper derives GUP-modified angular momentum and hydrogen energy shifts, but the central commutator step is mathematically unjustified.
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