Charged de Sitter-like black holes: quintessence-dependent enthalpy and new extreme solutions
Mustapha Azreg-A\"inou

TL;DR
This paper explores the thermodynamics and extreme solutions of charged black holes surrounded by quintessence, generalizing known horizons, deriving new formulas, and analyzing their thermodynamic properties and inequalities.
Contribution
It introduces new extreme black hole solutions with quintessence, generalizes the thermodynamic framework, and clarifies the relations between different energy definitions and volumes.
Findings
Derived new extreme black hole solutions with merged horizons.
Established the relation between Teitelboim's and Padmanabhan's energies.
Confirmed the validity of the Reverse Isoperimetric Inequality.
Abstract
We consider Reissner-Nordstr\"{o}m black holes surrounded by quintessence where both a non-extremal event horizon and a cosmological horizon exist besides an inner horizon (). We determine new extreme black hole solutions that generalize the Nariai horizon to asymptotically de Sitter-like solutions for any order relation between the squares of the charge and the mass parameter provided remains smaller than some limit, which is larger than . In the limit case , we derive the general expression of the extreme cosmo-black-hole, where the three horizons merge, and discuss some of its properties. We also show that the endpoint of the evaporation process is independent of any order relation between and . The Teitelboim's energy and Padmanabhan's energy are related by a nonlinear expression and are shown to…
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