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Testing binary dynamics in gravity at the sixth post-Newtonian level

机译:在第六届牛顿水平中测试重力的二元动力学

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摘要

We calculate the motion of binary mass systems in gravity up to the sixth post–Newtonian order to the GN3 terms ab initio using momentum expansions within an effective field theory approach based on Feynman amplitudes in harmonic coordinates. For these contributions we construct a canonical transformation to isotropic and to EOB coordinates at 5PN and agree with the results in the literature [1], [2] by Bern et al. and Damour. At 6PN we compare to the Hamiltonians in isotropic coordinates either given in [1] or resulting from the scattering angle. We find a canonical transformation from our Hamiltonian in harmonic coordinates to [1], but not to [2]. This implies that we also agree on all observables with [1] to the sixth post–Newtonian order to GN3.
机译:在基于谐波坐标中的Feynman幅度的有效领域理论方法中,在GN3术语AB ININIO中计算二元质量系统在重力中的动态达到牛顿术语的运动。对于这些贡献,我们将规范转化构建给各向同性,并在5PN的坐标上坐标,并同意文献中的结果[1],[2]通过Bern等人。和该死的。在6PN,我们与在[1]中给出的各向同性坐标中的汉密尔顿人,或由散射角度产生。我们发现从哈密顿人的谐波坐标到[1],但不是[2]。这意味着我们还就所有可观察品与[1]达到GN3的第六名。

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