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Orbital evolution of eccentric interacting binary star systems.

机译:偏心相互作用双星系统的轨道演化。

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摘要

We provide a comprehensive description of the long-term (secular) orbital evolution of eccentric interacting binary systems. The evolution of circular interacting binary systems is a well studied phenomenon, but observations have shown the existence of a small but significant number of eccentric interacting binary systems. We begin by extending the commonly accepted Roche formalism for binary interacting to include eccentric orbits and asynchronously rotating stars. Using this, we calculate orbital trajectories for particles ejected from a Roche lobe-filling donor star at the periastron of the eccentric orbit. These particles admit of three possible trajectories: direct impact onto the secondary star, self accretion back onto the donor star, and the formation of a disk about the accretor. We provide a proscription for determining a priori the trajectory of the particle given the initial system parameters, as well as describe the secular evolution of the system for each of the three cases described above. We find that these orbital evolution timescales are comparable to the mass transfer timescale which can be significantly longer than expected from the literature. Furthermore, while it is commonly assumed that any mass transfer interactions will act to circularize the orbit, we find that there are regimes of parameter space where mass transfer can cause an increase in eccentricity, and can do so at a timescale comparable to the circularization timescale created by tidal interactions. The formalism presented here can be incorporated into binary evolution and population synthesis models to create a self-consistent treatment of mass transfer in eccentric binaries.
机译:我们提供了偏心相互作用的二元系统的长期(长期)轨道演化的全面描述。循环相互作用的二元系统的演化是一个经过充分研究的现象,但观察结果表明存在少量但大量的偏心相互作用的二元系统。我们首先将普遍接受的罗氏形式主义(用于二进制交互)扩展到包括偏心轨道和异步旋转的恒星。使用此方法,我们可以计算在偏心轨道的周向星体中从罗氏充填的供体恒星中喷出的粒子的轨道轨迹。这些粒子具有三种可能的轨迹:直接撞击次级恒星,自我积聚回到供体恒星上以及在增生体周围形成圆盘。我们提供了一个禁令,可以根据给定的初始系统参数确定先验粒子的轨迹,并描述上述三种情况中每种情况下系统的长期演变。我们发现这些轨道演化时标与传质时标相当,传质时标可能大大长于文献中的预期。此外,虽然通常假定任何质量传递相互作用都将使轨道环化,但我们发现存在一些参数空间机制,其中质量传递会导致离心率增加,并且可以在与环化时间尺度相当的时间尺度上进行由潮汐相互作用产生。可以将此处介绍的形式主义并入二进制演化和种群综合模型中,以在偏心二进制中创建质量传递的自洽处理。

著录项

  • 作者

    Sepinsky, Jeremy Francis.;

  • 作者单位

    Northwestern University.;

  • 授予单位 Northwestern University.;
  • 学科 Physics Astronomy and Astrophysics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;
  • 关键词

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