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Entanglement Theory Quantum Correlations
Quantum Thermodynamics
Prospecting Black Hole Thermodynamics with Fractional Quantum Mechanics
arXiv
Authors: S. Jalalzadeh, F. Rodrigues da Silva, P. V. Moniz
Year
2021
Paper ID
63335
Status
Preprint
Abstract Read
~2 min
Abstract Words
133
Citations
N/A
Abstract
This paper investigates whether the framework of fractional quantum mechanics can broaden our perspective of black hole thermodynamics. Concretely, we employ a {\it space-fractional} derivative \cite{Rie} as our main tool. Moreover, we restrict our analysis to the case of a Schwarzschild configuration. From a subsequently modified Wheeler-DeWitt equation, we retrieve the corresponding expressions for specific observables. Namely, the black hole mass spectrum, M, its temperature T, and entropy, S. We find that these bear consequential alterations conveyed through a fractional parameter, α. In particular, the standard results are recovered in the specific limit α=2. Furthermore, we elaborate how generalizations of the entropy-area relation suggested by Tsallis and Cirto \cite{Tsallis} and Barrow \cite{Barrow} acquire a complementary interpretation in terms of a fractional point of view. A thorough discussion of our results is presented.
Why This Paper Matters
- This paper contributes to the Quantum Thermodynamics research area in the Quantum Articles archive.
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- This paper investigates whether the framework of fractional quantum mechanics can broaden our perspective of black hole thermodynamics.
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