Faber Joshua A, Rasio Frederic A
Center for Computational Relativity and Gravitation and School of Mathematical Sciences, Rochester Institute of Technology, 85 Lomb Memorial Drive, Rochester, NY 14623 USA.
Center for Interdisciplinary Exploration and Research in Astrophysics, and Department of Physics & Astronomy, Northwestern University, 2145 Sheridan Road, Evanston, IL 60208 USA.
Living Rev Relativ. 2012;15(1):8. doi: 10.12942/lrr-2012-8. Epub 2012 Jul 4.
We review the current status of studies of the coalescence of binary neutron star systems. We begin with a discussion of the formation channels of merging binaries and we discuss the most recent theoretical predictions for merger rates. Next, we turn to the quasi-equilibrium formalisms that are used to study binaries prior to the merger phase and to generate initial data for fully dynamical simulations. The quasi-equilibrium approximation has played a key role in developing our understanding of the physics of binary coalescence and, in particular, of the orbital instability processes that can drive binaries to merger at the end of their lifetimes. We then turn to the numerical techniques used in dynamical simulations, including relativistic formalisms, (magneto-)hydrodynamics, gravitational-wave extraction techniques, and nuclear microphysics treatments. This is followed by a summary of the simulations performed across the field to date, including the most recent results from both fully relativistic and microphysically detailed simulations. Finally, we discuss the likely directions for the field as we transition from the first to the second generation of gravitational-wave interferometers and while supercomputers reach the petascale frontier.
我们回顾了双中子星系统合并研究的现状。我们首先讨论合并双星的形成渠道,并探讨合并率的最新理论预测。接下来,我们转向用于在合并阶段之前研究双星并为全动态模拟生成初始数据的准平衡形式。准平衡近似在发展我们对双星合并物理的理解方面发挥了关键作用,特别是在轨道不稳定过程方面,这些过程可在双星寿命结束时驱动它们合并。然后,我们转向动态模拟中使用的数值技术,包括相对论形式、(磁)流体动力学、引力波提取技术和核微观物理处理。接下来是对迄今为止该领域进行的模拟的总结,包括来自全相对论和微观物理详细模拟的最新结果。最后,我们讨论了随着我们从第一代引力波干涉仪过渡到第二代,以及超级计算机达到千万亿次前沿时该领域可能的发展方向。