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Realistic solutions of fluid spheres in f(G, T) Gravity under Karmarkar condition

机译:在Karmarkar条件下F(g,T)重力的流体球体的现实解决方案

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This manuscript investigates the compact stars solutions in the background of observational data (radii and mass) by employing the Karmarkar condition under the f(G, T) modified gravity for an anisotropic source of fluid. For this study, we have assumed a specific model for g(rr) metric potential function, which has fulfilled the Karmarkar condition. This assuming model helps to calculate another metric function g(tt) by using the Karmarkar condition scenario. Further, this study deals to discuss the necessary physically properties by using the observational data for 4U 1538-52, LMC X-4, and PSR J1614-2230 models with three different values of parameter beta. It is depicted from this current study; the calculated solutions are physically acceptable with best degree of accuracy. All the physically necessary relevant parameters and properties compact stars are presented graphically. It is noticed during this study the parameter beta, has some importance and considerable role for these calculated solutions. In the end, it is concluded that our obtained solutions are physically arguable with well-behaved nature for f(G, T) modified gravity for these discussed compact stars. (C) 2020 Elsevier Inc. All rights reserved.
机译:该稿件通过在用于各向异性流体源的F(g,t)修改的重力下采用Karmarkar条件来研究观察数据(半径和质量)的背景中的紧凑型恒星解决方案。对于本研究,我们已经假设了G(RR)公制潜在函数的特定模型,该潜在函数已经实现了Karmarkar条件。这假设模型有助于使用Karmarkar条件方案来计算另一个度量函数g(tt)。此外,该研究涉及通过使用4U 1538-52,LMC X-4和PSR J1614-2230模型的观测数据讨论所需的物理性质,其中具有三种不同的参数测试版值。它由此目前的研究表明;计算出的解决方案以最佳的精度为身体上可接受。所有物理必要的相关参数和属性紧凑型恒星都是图形的。在此期间,在此研究期间被注意到参数测试版,对这些计算的解决方案具有一些重要性和相当大的作用。最后,得出结论是,我们所得溶液对这些讨论的紧凑型恒星的F(g,T)改性重力进行了良好的性质,具有良好的性质。 (c)2020 Elsevier Inc.保留所有权利。

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