Equilibrium configurations from gravitational collapse

dc.contributor.authorJoshi, Pankaj S.
dc.contributor.authorNarayan, Ramesh
dc.contributor.authorMalafarina, D.
dc.contributor.institutionSchool of Sciences and Humanities
dc.date.accessioned2015-12-22T10:35:59Z
dc.date.available2015-12-22T10:35:59Z
dc.date.issued2011-11-18
dc.description.abstractWe develop here a new procedure within Einstein’s theory of gravity to generate equilibrium configurations that result as the final state of gravitational collapse from regular initial conditions. As a simplification, we assume that the collapsing fluid is supported only by tangential pressure. We show that the equilibrium geometries generated by this method form a subset of static solutions to the Einstein equations, and that they can either be regular or develop a naked singularity at the center. When a singularity is present, there are key differences in the properties of stable circular orbits relative to those around a Schwarzschild black hole with the same mass. Therefore, if an accretion disk is present around such a naked singularity it could be observationally distinguished from a disk around a black hole.
dc.identifier.citationJoshi, P. S., Malafarina, D., & Narayan, R. (2011). Equilibrium configurations from gravitational collapse. Classical and Quantum Gravity, 28(23), 235018.
dc.identifier.urihttp://nur.nu.edu.kz/handle/123456789/951
dc.language.isoen
dc.sourceClassical and Quantum Gravity, 28(23), 235018.
dc.subjectgravitational collapse
dc.subjectblack holes
dc.subjectnaked singularity
dc.titleEquilibrium configurations from gravitational collapse
dc.typeArticle

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