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Variational iteration method for studying perihelion precession and deflection of light in General Relativity

机译:研究广义相对论中近日点进动和光偏转的变分迭代方法

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A new approach in studying the planetary orbits and deflection of light in General Relativity (GR) by means of the Variational iteration method (VIM) is proposed in this paper. For this purpose, a brief review of the nonlinear geodesic equations in the spherical symmetry spacetime and the main ideas of VIM are given. The appropriate correct functionals are constructed for the geodesics in the spacetime of Schwarzschild, Reissner-Nordstr?m and Kiselev black holes. In these cases, the Lagrange multiplier is obtained from the stationary conditions for the correct functionals. Then, VIM leads to the simple problem of computation of the integrals in order to obtain the approximate solutions of the geodesic equations. On the basis of these approximate solutions, the perihelion shift and the light deflection have been obtained for the metrics mentioned above.
机译:提出了一种利用变分迭代法(VIM)研究广义相对论(GR)中行星轨道和光偏转的新方法。为此目的,简要回顾了球对称时空中的非线性测地线方程和VIM的主要思想。在Schwarzschild,Reissner-Nordstr?m和Kiselev黑洞的时空中为测地线构造了适当的正确函数。在这些情况下,拉格朗日乘数是从固定条件下获得的,用于正确的功能。然后,VIM导致了积分计算的简单问题,以便获得测地线方程的近似解。在这些近似解的基础上,已经针对上述指标获得了近日点偏移和光偏转。

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