论文标题
热平衡质量损失模型及其在二元演化中的应用
The thermal equilibrium mass loss model and its applications in binary evolution
论文作者
论文摘要
二进制进化是必不可少的,在恒星进化中,要了解大多数特殊和有益物体的形成和演变,例如二进制二进制物体,紧凑型物体,类型IA Supernovae,X射线二进制文件,剧烈的变量,剧烈的变量,蓝色散乱者,蓝色散乱,热subdwarfs和Central Binaries in planet nebula in trane nebula intere nebula。二进制恒星中的传质可以改变相对于单个恒星进化的期望的相应物体的进化路径和命运。不稳定传质的临界质量比是二元进化中未解决的基本问题。为了解决这个问题,我们构建了热平衡质量损失模型,并得出热时尺度传播和不稳定的传质的临界质量比,后者发生在填充外拉格朗日点L2时发生。我们以几种3.2 MSUN恒星模型为例,我们研究了对热平衡质量损失的恒星响应,并介绍了热时间尺度传质的阈值。我们研究了包含3.2 MSUN供体星的二进制系统的传质通道,这些系统考虑了热时尺度传质,通过L2的不稳定传质以及动态时间尺度传质。我们重复此模拟的供体恒星的网格,其质量不同(z = 0.02的0.1至100 msun)和不同的进化阶段,并呈现我们的结果。结果表明,由于外拉格朗日角度过度填补而引起的不稳定的传质也可能在形成晚期红色巨型分支和渐近巨型分支供体的共同信封中起着至关重要的作用。
Binary evolution is indispensable in stellar evolution to understand the formation and evolution of most peculiar and energetic objects, such as binary compact objects, Type Ia supernovae, X-ray binaries, cataclysmic variables, blue stragglers, hot subdwarfs, and central binaries in planetary nebulae. Mass transfer in binary stars can change the evolutionary path and fate of the corresponding objects relative to what is expected from single stellar evolution. What is the critical mass ratio at which unstable mass transfer occurs is an unsolved fundamental problem in binary evolution. To resolve this issue, we construct the thermal equilibrium mass loss model and derive critical mass ratios for both thermal timescale mass transfer and unstable mass transfer, the latter of which occurs when the outer Lagrangian point, L2, is overfilled. Using several 3.2 Msun stellar models as examples, we study the stellar response to thermal equilibrium mass loss and present the thresholds for thermal timescale mass transfer. We study the possible mass transfer channels of binary systems containing a 3.2 Msun donor star, taking into account thermal timescale mass transfer, unstable mass transfer through L2, and dynamical timescale mass transfer. We repeat this simulation for a grid of donor stars with different masses (from 0.1 to 100 Msun with Z = 0.02) and at different evolutionary stages, and present our results. The results show that unstable mass transfer due to the overfilling of the outer Lagrangian point may also play an essential role in the formation of common envelopes for late red giant branch and asymptotic giant branch donors.