论文标题

大量紧凑的Bardeen恒星具有保形运动

Massive Compact Bardeen Stars with Conformal Motion

论文作者

Shamir, M. Farasat

论文摘要

本文的主要重点是讨论对紧凑型恒星研究的爱因斯坦 - 马克斯韦尔场方程的解决方案。我们选择了用于压力能密度关系的MIT袋模型方程,并使用共形杀伤向量来研究适当的度量系数形式。我们通过选择Bardeen模型来形容为外部时空来强加边界条件。 Bardeen模型可以为分析提供一些有趣的结果。例如,与通常的Reissner-Nordstrom案相比,渐近表示中涉及的额外术语可能会影响恒星结构的质量。能量密度和压力曲线在现实的表现外,除了中心奇异之外。结果表明,在我们的研究中满足了能量条件。研究了通过TOV方程和稳定性标准通过绝热指数进行的平衡条件,用于带电恒星结构研究。最后,我们还提供了对案例的审查,其中Reissner-Nordstrom时空作为匹配条件的外部几何形状。在这两种情况下,群众都服从Andreasson的限制$ \ sqrt {M} \ leq \ sqrt {r}/3+\ sqrt {r/9+q^2/3R} $ squrt oded star for a holded star。最终的结果表明,与通常的Reissner-Nordstrom时空相比,Bardeen模型的几何形状提供了更大的恒星对象。特别是,当前的研究支持了现实的大型结构,例如PSR J $ 1614-2230 $。

The main focus of this paper is to discuss the solutions of Einstein-Maxwell's field equations for compact stars study. We have chosen the MIT bag model equation of state for the pressure-energy density relationship and conformal Killing vectors are used to investigate the appropriate forms for metric coefficients. We impose the boundary conditions, by choosing the Bardeen model to describe as an exterior spacetime. The Bardeen model may provide the analysis with some interesting results. For example, the extra terms involved in the asymptotic representations as compared to the usual Reissner-Nordstrom case may influence the mass of a stellar structure. Both energy density and pressure profiles behave realistically except a central singularity. It is shown that the energy conditions are satisfied in our study. The equilibrium conditions through TOV equation and stability criteria through Adiabatic index for the charged stellar structure study are investigated. Lastly, we have also provided a little review of the case with Reissner-Nordstrom spacetime as an exterior geometry for the matching condition. In both cases, the masses obey the Andreasson's limit $\sqrt{M} \leq \sqrt{R}/3+\sqrt{R/9+q^2/3R}$ requirement for a charged star. Conclusively, the results show that Bardeen model geometry provides more massive stellar objects as compared to usual Reissner-Nordstrom spacetime. In particular, the current study supports the existence of realistic massive structures like PSR J $1614-2230$.

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