星团中双星的长期动力学- III。广义相对论进动下的双平均动力学

C. Hamilton, R. Rafikov
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引用次数: 3

摘要

由外部(潮汐)势驱动的双星的长期演化是一个经典的天体物理学问题。潮汐扰动可以由外部点质量引起,如在Lidov-Kozai (LK)的层次三重理论中,或由于双星所在的扩展恒星系统(如星系或球状星团)。在许多应用中,广义相对论(GR)的附加进动是很重要的,并且已经在一些LK计算中得到了考虑。本文通过详细探讨GR进动对任意轴对称势双星(其中包括LK理论作为特例)的(四极水平)潮汐演化的影响,对这些研究进行了推广和扩展。我们研究了任意强度GR和二元初始条件下的(双平均)轨道动力学,揭示了全新的相空间形态,对二元轨道演化具有重要意义。我们还探讨了当双星达到高离心率($e\至$ 1$)时,GR进动如何影响双星轨道元素的长期演化,并描述了几种不同的动力学机制。我们的结果适用于各种天体物理系统。特别是,它们可以用来理解(星系团)潮汐驱动的致密物体合并的高偏心行为——即LIGO/处女座引力波源——对于GR效应至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secular dynamics of binaries in stellar clusters – III. Doubly averaged dynamics in the presence of general-relativistic precession
Secular evolution of binaries driven by an external (tidal) potential is a classic astrophysical problem. Tidal perturbations can arise due to an external point mass, as in the Lidov-Kozai (LK) theory of hierarchical triples, or due to an extended stellar system (e.g. galaxy or globular cluster) in which the binary resides. For many applications, general-relativistic (GR) apsidal precession is important, and has been accounted for in some LK calculations. Here we generalise and extend these studies by exploring in detail the effect of GR precession on (quadrupole-level) tidal evolution of binaries orbiting in arbitrary axisymmetric potentials (which includes LK theory as a special case). We study the (doubly-averaged) orbital dynamics for arbitrary strengths of GR and binary initial conditions and uncover entirely new phase space morphologies with important implications for the binary orbital evolution. We also explore how GR precession affects secular evolution of binary orbital elements when the binary reaches high eccentricity ($e\to 1$) and delineate several different dynamical regimes. Our results are applicable to a variety of astrophysical systems. In particular, they can be used to understand the high-eccentricity behaviour of (cluster) tide-driven compact object mergers -- i.e. LIGO/Virgo gravitational wave sources -- for which GR effects are crucial.
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