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Dynamical and thermodynamical stability of a charged thin-shell wormhole

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arxiv 2408.14328 v3 pith:TS3WIGDH submitted 2024-08-26 gr-qc

Dynamical and thermodynamical stability of a charged thin-shell wormhole

classification gr-qc
keywords dynamicalstabilitythermodynamicalchargedequationpressurestatethin-shell
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A study of the dynamical and thermodynamical stability of a charged thin-shell wormhole built by gluing two Reissner-Nordstr\"{o}m geometries is presented. The charge on the shell is linearly related to the matter content. For the dynamical stability, a concise inequality is obtained, valid for any barotropic equation of state that relates the pressure with the energy density at the throat. A thermodynamical description of the system is introduced, which leads to the temperature and the electric potentials. Adopting a linear equation of state for the pressure and a definite form for the entropy function, the set of equilibrium configurations that are both dynamically and thermodynamically stable is found.

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  1. Junction Conditions, Radial Stability, Thermodynamics, Optical Geometry and Appearance of Polymer-Quintessence Thin-Shell Wormholes

    gr-qc 2026-07 conditional novelty 5.0

    Keeping the nonareal polymer angular sector in a polymer-quintessence thin-shell wormhole adds a momentum-flux term that reshapes stability, thermodynamics, and cross-throat image branches.