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Quantum Gravitational Corrections to the Entropy of a Schwarzschild Black Hole
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We calculate quantum gravitational corrections to the entropy of black holes using the Wald entropy formula within an effective field theory approach to quantum gravity. The corrections to the entropy are calculated to second order in curvature and we calculate a subset of those at third order. We show that, at third order in curvature, interesting issues appear that had not been considered previously in the literature. The fact that the Schwarzschild metric receives corrections at this order in the curvature expansion has important implications for the entropy calculation. Indeed, the horizon radius and the temperature receive corrections. These corrections need to be carefully considered when calculating the Wald entropy.
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Cited by 1 Pith paper
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Black Hole Solutions in Quantum Gravity with Vilkovisky-DeWitt Effective Action
Non-Schwarzschild static black hole solutions exist generically in quantum gravity theories with GR as a low-energy limit, as shown from the Vilkovisky-DeWitt effective action using renormalization group invariance.
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