论文标题

共同的二进制系统造成的前常见质量损失

Pre-Common-Envelope Mass Loss from Coalescing Binary Systems

论文作者

MacLeod, Morgan, Loeb, Abraham

论文摘要

将不稳定的Roche Lobe溢流气体溢出的二进制系统进入其环境环境,因为它们的轨道向融合而腐烂。在本文中,我们使用了一套涉及扩展供体和更紧凑的吸积的合并二进制组的流体动力模型。我们专注于不稳定的Roche Lobe溢出的时期,该时期随着公共包膜阶段开始时的增生器的信封内的趋势而结束。在此阶段,将质量从供体中移除,并抛向环境环境。在各种二元质量比的范围内,我们发现随着分离从罗氏的极限降低到供体的原始半径,质量被排出的质量降低,为增生器质量的25%。我们研究了这种弹出的运动学及其对二进制特性的依赖性,并发现它聚集成环形的环形分布。这些圆形摩尔杆菌具有大约恒定的角度动量,这是由于从轨道二进制发射的螺旋冲击的动量传输而引起的。我们表明,具有这些圆环特性的分析模型捕获了流体动力模拟的方位角平均剖面的许多主要特征。我们的结果,尤其是增生质量与驱逐质量之间的简单关系及其空间分布之间的简单关系,可能有助于解释恒星合并瞬变(如发光红色Novae),以及初始化随后的共同包膜阶段的流体动力学模拟。

Binary systems undergoing unstable Roche Lobe overflow spill gas into their circumbinary environment as their orbits decay toward coalescence. In this paper, we use a suite of hydrodynamic models of coalescing binaries involving an extended donor and a more compact accretor. We focus on the period of unstable Roche Lobe overflow that ends as the accretor plunges within the envelope of the donor at the onset of a common envelope phase. During this stage, mass is removed from the donor and flung into the circumbinary environment. Across a wide range of binary mass ratios, we find that the mass expelled as the separation decreases from the Roche limit to the donor's original radius is of the order of 25% of the accretor's mass. We study the kinematics of this ejecta and its dependencies on binary properties and find that it assembles into a toroidal circumbinary distribution. These circumbinary tori have approximately constant specific angular momentum due to momentum transport by spiral shocks launched from the orbiting binary. We show that an analytic model with these torus properties captures many of the main features of the azimuthally-averaged profiles of our hydrodynamic simulations. Our results, in particular the simple relationship between accretor mass and expelled mass and its spatial distribution, may be useful in interpreting stellar coalescence transients like luminous red novae, and in initializing hydrodynamic simulations of the subsequent common envelope phase.

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