ADM mass of the quantum-corrected Schwarzchild black hole
Maja Buric, Voja Radovanovic

TL;DR
This paper calculates the ADM mass of a quantum-corrected Schwarzschild black hole within a spherically symmetric dilaton gravity framework, providing insights into black hole thermodynamics with quantum effects.
Contribution
It introduces a method to determine the ADM mass of quantum-corrected black holes in a dilaton gravity model, extending classical results to include quantum corrections.
Findings
Derived the ADM mass for quantum-corrected Schwarzschild black hole
Established the black hole's thermal equilibrium with Hawking radiation
Enhanced understanding of quantum effects in black hole mass calculations
Abstract
We study the hamiltonian and constraints of spherically symmetric dilaton gravity model. We find the ADM mass of the solution representing the Schwarzchild black hole in thermal equilibrium with the Hawking radiation.
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