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Spherical Thin-Shell Wormholes and Modified Chaplygin Gas

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arxiv 1310.0326 v1 pith:BO3U6D4X submitted 2013-09-28 gr-qc

Spherical Thin-Shell Wormholes and Modified Chaplygin Gas

classification gr-qc
keywords solutionschaplyginmodifiedsphericalstabilitythin-shellwormholecite
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The purpose of this paper is to construct spherical thin-shell wormhole solutions through cut and paste technique and investigate the stability of these solutions in the vicinity of modified Chaplygin gas. The Darmois-Israel formalism is used to formulate the stresses of the surface concentrating the exotic matter. We explore the stability of the wormhole solutions by using the standard potential method. We conclude that there exist more stable as well as unstable solutions than the previous study with generalized Chaplygin gas \cite{15}.

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Cited by 1 Pith paper

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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.