Charged Vaidya-Tikekar model for super compact star
arXiv:1801.01407 · doi:10.1140/epjc/s10052-018-6017-4
Abstract
In this work, we explore a class of compact charged spheres that have been tested against experimental and observational constraints with some known compact stars candidates. The study is performed by considering the self-gravitating, charged, isotropic fluids which is more pliability in solving the Einstein-Maxwell equations. In order to determine the interior geometry, we utilize the Vaidya-Tikekar geometry for the metric potential with Riessner-Nordstrom metric as an exterior solution. In this models, we determine constants after selecting some particular values of M and R, for the compact objects SAX J1808.4-3658, Her X-1 and 4U 1538-52. The most striking consequence is that hydrostatic equilibrium is maintained for different forces, and the situation is clarified by using the generalized Tolman-Oppenheimer-Volkoff (TOV) equation. In addition to this, we also present the energy conditions, speeds of sound and compactness of stars that are very much compatible to that for a physically acceptable stellar model. Arising solutions are also compared with graphical representations that provide strong evidences for more realistic and viable models, both at theoretical and astrophysical scale.
13 Pages, 5 Figures and 4 Tables
References in corpus (10)
- Bounds on the basic physical parameters for anisotropic compact general relativistic objects
- Charged anisotropic matter with linear equation of state
- Electrically Charged Strange Quark Stars
- Minimum mass-radius ratio for charged gravitational objects
- The role of pressure anisotropy on the maximum mass of cold compact stars
- Analytical models for quark stars
- Tikekar superdense stars in electric fields
- Absolute Stability Limit for Relativistic Charged Spheres
- Compact stars with specific mass function
- Relativistic compact stars with charged anisotropic matter
Cited by in corpus (12)
- Anisotropic Compact stars in the Buchdahl model: A comprehensive study
- Electrically Charged Quark Stars in Einstein-Gauss-Bonnet Gravity
- Buchdahl model in f(R, T) gravity: A comparative study with standard Einstein's gravity
- Relativistic charged spheres: Compact stars, compactness and stable configurations
- Decoupled Anisotropic Buchdahl's Relativistic Models in Theory
- An electromagnetic extension of the Schwarzschild interior solution and the corresponding Buchdahl limit
- Behavior of anisotropic fluids with Chaplygin equation of state in Buchdahl spacetime
- Charged Analogues of Isotropic Compact Stars Model with Buchdahl Metric in General Relativity
- Isotropic uncharged model with compactness and stable con gurations
- Pulsar PSR B0943+10 as an isotropic Vaidya-Tikekar type compact star : A comprehensive study
- Structural properties of charged compact stars with color-flavour-locked quarks matter
- Electrically charged compact stars with an interacting quark equation of state