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Topology of black hole phase transition in JT gravity

Hemant Rathi, Dibakar Roychowdhury

2025Physics Letters B13 citationsDOIOpen Access PDF

Abstract

We present a JT gravity setup coupled with U ( 1 ) and S U ( 2 ) Yang-Mills fields in two dimensions that reveals the onset of a small black hole to large black hole phase transition at finite chemical potential(s). We identify these black hole solutions as “topological defects” in the thermodynamic phase space and calculate the associated topological numbers following the standard procedure. We confirm the robustness of our model by estimating perturbative corrections to the bulk free energy at an arbitrary order in the Yang-Mills coupling. We also construct the Schwarzian for the boundary theory using the 2D gravitational action in the bulk and comment on the dual SYK like model where similar observations can be made.

Topics & Concepts

PhysicsPhase transitionBlack hole (networking)Topology (electrical circuits)Theoretical physicsQuantum electrodynamicsCondensed matter physicsComputer networkCombinatoricsLink-state routing protocolComputer scienceRouting (electronic design automation)MathematicsRouting protocolBlack Holes and Theoretical PhysicsCosmology and Gravitation TheoriesParticle physics theoretical and experimental studies
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