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A new anisotropic solution by MGD gravitational decoupling

机译:MGD引力去耦的新各向异性解决方案

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This paper is focused on the search for new anisotropic analytic solutions to Einstein's field equations for a spherically symmetric and static stellar distribution by means of the gravitational decoupling realized via the Minimal Geometric Deformation (MGD) approach. Firstly, a Buchdahl perfect fluid inside the stellar distribution is considered and the Einstein's field equations are used in order to obtain the explicit form of the pressure and density for the perfect fluid. Then, the matching conditions for stellar distributions are used to find the constants involved in the Buchdahl solution in order to ensure the geometric continuity at the stellar surface. Finally, the Buchdahl solution is deformed to obtain the anisotropic solution and the matching conditions are used to find the constants involved in the new solution. The result is a new analytic and well-behaved anisotropic solution, in which all their physical parameters, such as the effective density, the effective radial and tangential pressure, fullfill each of the requirements for the physical acceptability available in the literature. Therefore, this solution can give a satisfactory description of realistic astrophysical compact objects like stars.
机译:本文专注于通过通过最小几何变形(MGD)方法实现的重力去耦,在寻找新的各向异性分析解决方程的新各向异性分析解决方程。首先,考虑了恒星分布内的Buchdahl完美的流体,并且使用了爱因斯坦的场方程,以便获得完美流体的压力和密度的显式形式。然后,用于恒星分布的匹配条件用于找到诸如Buchdahl溶液中涉及的常数,以确保恒星表面处的几何连续性。最后,BuchdAhl溶液变形以获得各向异性溶液,并且匹配条件用于找到新解决方案中涉及的常数。结果是一种新的分析和表现良好的各向异性解决方案,其中它们的所有物理参数,如有效密度,有效的径向和切向压力,填满了文献中可用的物理可接受性的每个要求。因此,该解决方案可以令人满意地描述现实的天体物理紧凑型物体等恒星。

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