A static spherically symmetric perfect fluid solution to model the interior of stars

Author:

Estevez Delgado GabinoORCID,Estevez Delgado Joaquin,Aguilar Campuzano Elivet

Abstract

An exact solution for modeling the interior of stars with perfect fluid is presented, the geometry of their interior is described by a static and spherically symmetric regular space-time. The hydrostatic functions are physically acceptable for the compactness rate u = GM/c2R ∈ (0, 0.3183497], the speed of sound is a monotonically decreasing function, positive and lower than the speed of light, which implies that the condition of causality is not violated, meanwhile the stability of the solution is guaranteed due to the adiabatic index γ > 3.08387 and it is a monotonically increasing function. The analysis of the solution is presented graphically for specific values of the compactness on the interval u ∈ [0.2509338, 0.3183497] with the minimum value of this interval associated to the neutron star PSR J0348+0432, for observational data which generates the maximum compactness when the radius is minimal R = 12.062 km and the mass is maximum M = 2.05 M¯, generating a value of the central density ρc = 7.520589 × 1017 kg/m3

Publisher

Sociedad Mexicana de Fisica A C

Subject

General Physics and Astronomy,Education

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Relativistic charged stellar modeling with a perfect fluid sphere;Communications in Theoretical Physics;2023-09-01

2. An anisotropic interior solution of Einstein equations;Modern Physics Letters A;2023-04-10

3. Description of the interior of the neutron star in EXO 1785-248 by mean of the Karmarkar condition;International Journal of Geometric Methods in Modern Physics;2023-04-06

4. A viable relativistic charged model of super-dense star LMC X-4;Modern Physics Letters A;2023-03-21

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