Post-Newtonian theory for gravitational waves

IF 26.3 2区 物理与天体物理 Q1 PHYSICS, PARTICLES & FIELDS Living Reviews in Relativity Pub Date : 2024-07-10 DOI:10.1007/s41114-024-00050-z
Luc Blanchet
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Abstract

To be observed and analyzed by the network of current gravitational-wave detectors (LIGO, Virgo, KAGRA), and in anticipation of future third generation ground-based (Einstein Telescope, Cosmic Explorer) and space-borne (LISA) detectors, inspiralling compact binaries—binary star systems composed of neutron stars and/or black holes in their late stage of evolution prior the final coalescence—require high-accuracy predictions from general relativity. The orbital dynamics and emitted gravitational waves of these very relativistic systems can be accurately modelled using state-of-the-art post-Newtonian theory. In this article we review the multipolar-post-Minkowskian approximation scheme, merged to the standard post-Newtonian expansion into a single formalism valid for general isolated matter system. This cocktail of approximation methods (called MPM-PN) has been successfully applied to compact binary systems, producing equations of motion up to the fourth-post-Newtonian (4PN) level, and gravitational waveform and flux to 4.5PN order beyond the Einstein quadrupole formula. We describe the dimensional regularization at work in such high post-Newtonian calculations, for curing both ultra-violet and infra-red divergences. Several landmark results are detailed: the definition of multipole moments, the gravitational radiation reaction, the conservative dynamics of circular orbits, the first law of compact binary mechanics, and the non-linear effects in the gravitational-wave propagation (tails, iterated tails and non-linear memory). We also discuss the case of compact binaries moving on eccentric orbits, and the effects of spins (both spin-orbit and spin–spin) on the equations of motion and gravitational-wave energy flux and waveform.

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引力波的后牛顿理论
为了被目前的引力波探测器网络(LIGO、Virgo、KAGRA)观测和分析,并期待未来的第三代地基(爱因斯坦望远镜、宇宙探测器)和星载(LISA)探测器,吸入式紧凑双星--由中子星和/或黑洞组成的双星系统在最终凝聚前的演化后期--需要广义相对论的高精度预测。这些相对论性极强的系统的轨道动力学和发射的引力波可以用最先进的后牛顿理论进行精确建模。在这篇文章中,我们回顾了多极-后-明科夫斯基近似方案,它与标准的后牛顿扩展合并成一个单一的形式主义,对一般孤立物质系统有效。这种鸡尾酒近似方法(称为 MPM-PN)已成功应用于紧凑双星系统,产生了高达第四后牛顿(4PN)阶的运动方程,以及超出爱因斯坦四极公式的 4.5PN 阶引力波形和通量。我们描述了在这种高牛顿后计算中的维正则化,以消除紫外和红外发散。我们详细介绍了几个里程碑式的结果:多极矩的定义、引力辐射反应、圆形轨道的保守动力学、紧凑双星力学第一定律,以及引力波传播中的非线性效应(尾部、迭代尾部和非线性记忆)。我们还讨论了在偏心轨道上运动的紧凑双星的情况,以及自旋(自旋轨道和自旋-自旋)对运动方程和引力波能量通量及波形的影响。
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来源期刊
Living Reviews in Relativity
Living Reviews in Relativity 物理-物理:粒子与场物理
CiteScore
69.90
自引率
0.70%
发文量
0
审稿时长
20 weeks
期刊介绍: Living Reviews in Relativity is a peer-reviewed, platinum open-access journal that publishes reviews of research across all areas of relativity. Directed towards the scientific community at or above the graduate-student level, articles are solicited from leading authorities and provide critical assessments of current research. They offer annotated insights into key literature and describe available resources, maintaining an up-to-date suite of high-quality reviews, thus embodying the "living" aspect of the journal's title. Serving as a valuable tool for the scientific community, Living Reviews in Relativity is often the first stop for researchers seeking information on current work in relativity. Written by experts, the reviews cite, explain, and assess the most relevant resources in a given field, evaluating existing work and suggesting areas for further research. Attracting readers from the entire relativity community, the journal is useful for graduate students conducting literature surveys, researchers seeking the latest results in unfamiliar fields, and lecturers in need of information and visual materials for presentations at all levels.
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