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Charged anisotropic Finch-Skea-Bardeen spheres

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NUCLEAR PHYSICS B
卷 967, 期 -, 页码 -

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DOI: 10.1016/j.nuclphysb.2021.115418

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This manuscript investigates compact geometries using the Karmarkar condition with charged anisotropic source of matter distribution, focusing on the implication of the Bardeen model as an outer spacetime. The analysis includes profiles of pressure, energy density, charged density, anisotropy function, electric field attributes, energy bounds, red-shift function, compactness parameter, stability, and adiabatic index, showing that the obtained solutions are physically viable and stable.
This manuscript explores the compact geometries by employing Karmarkar condition with the charged anisotropic source of matter distribution. For this purpose, we consider an explicit model by indulging grrmetric potential obeying the Karmarkar condition. Moreover, we ansatz the time metric co-efficient following the approach by Adler [1]. The crucial aspect of present investigation is the implication of the Bardeen model as an outer spacetime [2]. Implementation of Bardeen approach turns out to be very interesting as this corresponds to the magnetic mono-pole gravitational remnants emerging from some particular non-linear electrodynamics. Detailed analysis supported by their corresponding plots of the profiles of the pressure profiles, energy density, charged density, anisotropy function, electric field attributes, energy bounds, red-shift function, compactness parameter, stability and adiabatic index has been provided. It is important to mention here that our obtained solutions are physically viable and are well stable. (C) 2021 The Author(s). Published by Elsevier B.V.

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