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Relativistic parametric embedding class I solutions of cold stars in Karmarkar space-time continuum

机译:相对论参数嵌入I类I型冷星解决方案在Karmarkar时空连续内

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The aim of this paper is to explore a new parametric class of relativistic solutions to the Einstein field equations describing a spherically symmetric, static distribution of anisotropic fluid spheres to study the behavior of some of the cold stars in the setting of Karmarkar space-time continuum. We develop models of stellar objects for a range of parameter values of n and analyze their behavior through graphical representation. For each of these models, we have found that the metric potentials are well behaved inside the stellar interior and the physical parameters such as density, radial and tangential pressures, red-shift, radial speed, radial pressure density ratio and energy conditions display a continuous decrease from the center to surface of the stars whereas the mass, anisotropy, adiabatic indexes and compactification factor show a monotonous increase which imply that the proposed solution satisfy all the physical aspects of a realistic stellar objects. The stability of the solutions are verified by examining various stability aspects, viz., Zeldovich criteria, causality condition, Bondi condition, equilibrium condition (TOV-equation) and stable static criteria in connection to their cogency.
机译:本文的目的是探讨描述球斯坦野外方程的新参数类别的相对主义解决方案,描述了各向异性流体球体的球形对称,静态分布,研究了在Karmarkar时空连续内的设置中一些冷星的行为。我们开发恒星对象的模型,用于N的一系列参数值,并通过图形表示分析其行为。对于每个这些模型,我们发现公制电位在恒星内部和物理参数中表现良好,诸如密度,径向和切向压力,红移,径向速度,径向压力密度比和能量条件下的物理参数。连续显示从中心到恒星的表面下降,而质量,各向异性,绝热指标和压缩因子表明单调增加,这意味着所提出的解决方案满足现实恒星物体的所有物理方面。通过检查各种稳定性方面,Zeldovich标准,因果关系,键状况,平衡条件(TOV等方案)和与其核心有关的稳定静态标准来验证解决方案的稳定性。

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