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Evolution of compact stars and dark dynamical variables

机译:紧密恒星和暗动态变量的演变

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This work aims to explore the dark dynamical effects of the f(R,?T) modified gravity theory on the dynamics of a compact celestial star. We have taken the interior geometry of a spherical star which is filled with an imperfect fluid distribution. The modified field equations are explored by taking a particular form of the f(R,?T) model, i.e. (f(R,T)=f_1(R)+f_2(R)f_3(T)). These equations are utilized to formulate the well-known structure scalars under the dark dynamical effects of this higher-order gravity theory. Also, with the help of these scalar variables, the evolution equations for expansion and shear are formulated. The whole analysis is made under the condition of a constant R and T. We found a crucial significance of dark source terms and dynamical variables on the evolution and density inhomogeneity of compact objects.
机译:这项工作旨在探索f(R,?T)修正引力理论对紧凑天体动力学的暗动态影响。我们采用了球形星的内部几何形状,其中充满了不完善的流体分布。通过采用特定形式的f(R,ΔT)模型(即(f(R,T)= f_1(R)+ f_2(R)f_3(T))探索改进的场方程。这些方程式被用来在这种高阶引力理论的黑暗动力作用下公式化众所周知的结构标量。同样,借助这些标量变量,可以制定出扩展和剪切的演化方程。整个分析是在R和T恒定的条件下进行的。我们发现暗源项和动力学变量对致密物体的演化和密度不均匀性具有至关重要的意义。

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