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New exact models for anisotropic matter with electric field

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dc.creator Sunzu, J. M.
dc.creator Danford, P.
dc.date 2020-03-19T08:38:25Z
dc.date 2020-03-19T08:38:25Z
dc.date 2017
dc.date.accessioned 2022-10-20T13:25:30Z
dc.date.available 2022-10-20T13:25:30Z
dc.identifier Sunzu, J. M., & Danford, P. (2017). New exact models for anisotropic matter with electric field. Pramana, 89 (3), 44.
dc.identifier 10.1007/s12043-017-1442-8
dc.identifier http://hdl.handle.net/20.500.12661/2198
dc.identifier.uri http://hdl.handle.net/20.500.12661/2198
dc.description Full Text Article. Also available at: 10.1007/s12043-017-1442-8
dc.description We generate two new exact models for the Einstein–Maxwell field equations. In our models, we consider the stellar object that is anisotropic and charged with linear equation of state consistent with quark stars. We have a new choice of measure of anisotropy that is physically reasonable. It is interesting that in our models we regain previous isotropic results as special cases. Isotropic exact solutions regained include models by Komathiraj and Maharaj; Mak and Harko; and Misner and Zapolsky. We can also obtain particular anisotropic models obtained by Maharaj, Sunzu, and Ray. The exact solutions corresponding to our models are found explicitly in terms of elementary functions. The graphical plots generated for the matter variables and the electric field are well behaved. We also generate relativistic stellar masses consistent with observations.
dc.language en
dc.publisher Springer
dc.subject Einstein–Maxwell equations
dc.subject Anisotropy
dc.subject Charged matter
dc.subject Equation state
dc.subject Quark stars
dc.subject Isotropic
dc.subject Electric field
dc.subject Relativistic astrophysics
dc.subject Model compact objects
dc.subject Radial adiabatic perturbations
dc.subject Adiabatic perturbations
dc.title New exact models for anisotropic matter with electric field
dc.type Article


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