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Thermodynamics of Dyonic NUT Charged Black Holes with entropy as Noether charge

Niloofar Abbasvandi, Masoumeh Tavakoli, Robert B. Mann

2021Journal of High Energy Physics17 citationsDOIOpen Access PDF

Abstract

A bstract We investigate the thermodynamic behaviour of Lorentzian Dyonic Taub-NUT Black Hole spacetimes. We consider two possibilities in their description: one in which their entropy is interpreted to be one quarter of the horizon area (the horizon entropy), and another in which the Misner string also contributes to the entropy (the Noether charge entropy). We find that there can be as many as three extremal black holes (or as few as zero) depending on the choice of parameters, and that the dependence of the free energy on temperature — and the resultant phase behaviour — depends very much on which of these situations holds. Some of the phase behaviour we observe holds regardless of which interpretation of the entropy holds. However another class of phase transition structures occurs only if the Noether charge interpretation of the entropy is adopted.

Topics & Concepts

PhysicsNoether's theoremEntropy (arrow of time)Black hole thermodynamicsBlack hole (networking)Charged black holeMathematical physicsCharge (physics)Black branePhase transitionHorizonSecond law of thermodynamicsThermodynamicsTheoretical physicsInterpretation (philosophy)Quantum mechanicsElectric chargeClassical mechanicsBoltzmann's entropy formulaQuantum electrodynamicsString theoryExtremal black holeDyonBlack Holes and Theoretical PhysicsAstrophysical Phenomena and ObservationsNoncommutative and Quantum Gravity Theories
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