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The binary black-hole dynamics at the third post-Newtonian order in the orbital motion

机译:轨道运动中第三后牛顿阶的二元黑洞动力学

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摘要

The orbital dynamics of the binary point-mass systems is ambiguous at the third post-Newtonian order of approximation. The static ambiguity is known to be related to the difference between the Brill-Lindquist solution and the Misner-Lindquist solution of the time-symmetric conformally flat initial value problem for binary black holes. The kinetic ambiguity is noticed to violate in general the standard relation between the center-of-mass velocity and the total linear momentum as demanded by global Lorentz invariance.
机译:二元点质量系统的轨道动力学在牛顿近似后的第三阶近似中是模棱两可的。已知静态歧义与二进制黑洞的时间对称保形初始值问题的Brill-Lindquist解和Misner-Lindquist解之间的差异有关。注意到动力学不确定性通常违反质心速度与总洛伦兹不变性所要求的总线性动量之间的标准关系。

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