论文标题
保守后二进制动力学后的孟加斯基后有效现场理论
Post-Minkowskian Effective Field Theory for Conservative Binary Dynamics
论文作者
论文摘要
我们开发了一种有效的野外理论(EFT)形式主义,以通过后链球后(PM)散射数据来解决重力中二元系统的保守动力学。我们的框架结合了一种系统的EFT方法,用于计算PM扩展中的挠度角,以及[1910.03008,1911.09130]中引入的“边界到边界”(B2B)词典。由于散射过程的性质,与PM方案中电势的直接EFT计算相比,Feynman图的数量和积分的类型都显着降低了复杂性。我们提供了两个说明性的例子。首先,我们将所有保守的轨道轨道的保守引力可观察物计算为下午2点,这仅从超出领先顺序的一个拓扑结束。结果与[1910.03008,1911.09130]中的结果一致,该结果是通过应用于Cheung等人的一个环幅度的经典限制的“动力公式”获得的。 [1808.02489]。为了进行比较,我们将保守的哈密顿量重建为2pm顺序,这相当于[1808.02489]中从匹配计算中得出的序列。其次,我们计算出领先PM顺序的电和磁性爱情数量的潮汐效应引起的散射角。然后,使用B2B词典,我们获得了对Periastron进展的潮汐贡献。我们还构建了一个哈密顿量,包括领先的PM顺序。尽管依靠(相对论的)feynman图,但此处开发的EFT形式主义并不涉及量子幅度的经典限制,既没有具有内部大型领域的积分,也不涉及其他匹配计算,也不涉及其他匹配的计算,也不是虚假的(“超古典”)红外奇异性。通过施工,EFT方法可以自动为所有PM订单。
We develop an Effective Field Theory (EFT) formalism to solve for the conservative dynamics of binary systems in gravity via Post-Minkowskian (PM) scattering data. Our framework combines a systematic EFT approach to compute the deflection angle in the PM expansion, together with the 'Boundary-to-Bound' (B2B) dictionary introduced in [1910.03008, 1911.09130]. Due to the nature of scattering processes, a remarkable reduction of complexity occurs both in the number of Feynman diagrams and type of integrals, compared to a direct EFT computation of the potential in a PM scheme. We provide two illustrative examples. Firstly, we compute all the conservative gravitational observables for bound orbits to 2PM, which follow from only one topology beyond leading order. The results agree with those in [1910.03008, 1911.09130], obtained through the 'impetus formula' applied to the classical limit of the one loop amplitude in Cheung et al. [1808.02489]. For the sake of comparison we reconstruct the conservative Hamiltonian to 2PM order, which is equivalent to the one derived in [1808.02489] from a matching calculation. Secondly, we compute the scattering angle due to tidal effects from the electric- and magnetic-type Love numbers at leading PM order. Using the B2B dictionary we then obtain the tidal contribution to the periastron advance. We also construct a Hamiltonian including tidal effects at leading PM order. Although relying on (relativistic) Feynman diagrams, the EFT formalism developed here does not involve taking the classical limit of a quantum amplitude, neither integrals with internal massive fields, nor additional matching calculations, nor spurious ('super-classical') infrared singularities. By construction, the EFT approach can be automatized to all PM orders.