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The effacing principle in the post-Newtonian celestial mechanics

机译:后牛顿天体力学中的磨蚀原理

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摘要

First post-Newtonian (PN) approximation of the scalar-tensor theory of gravity is used to discuss the effacing principle in N-body system, that is dependence of equations of motion of spherically-symmetric bodies comprising the system on their internal structure. We demonstrate that the effacing principle is violated by terms which are proportional to the second order rotational moment of inertia of each body coupled with \beta-1, where \beta is the measure of non-linearity of gravitational field. In case of general relativity, where \beta=1, the effacing principle is violated by terms being proportional to the rotational moment of inertia of the forth order. For systems made of neutron stars (NS) and/or black holes (BH) these terms contribute to the orbital equations of motion at the level of the third and fifth PN approximation respectively.
机译:标量-张量引力理论的第一后牛顿(PN)逼近用于讨论N体系统中的磨耗原理,也就是构成该系统的球对称体的运动方程依赖于其内部结构。我们证明,与与\ beta-1耦合的每个物体的二阶惯性旋转力矩成比例的术语违反了磨损原理,其中\ beta是重力场非线性的量度。在广义相对论中,其中\ beta = 1,与四阶惯性旋转矩成比例的项违反了磨损原理。对于由中子星(NS)和/或黑洞(BH)组成的系统,这些项分别在第三和第五PN近似的水平上有助于运动的轨道方程。

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