论文标题

在外部伴侣恒星存在下,环形磁盘的演变

Circumbinary disk evolution in the presence of an outer companion star

论文作者

Martin, Rebecca G., Lepp, Stephen, Lubow, Stephen H., Kenworthy, Matthew A., Kennedy, Grant M., Vallet, David

论文摘要

我们考虑了一个分层三重系统,该系统由内部偏心二进制组成,并带有外部伴侣。内部二进制周​​围的高度不一致的环形磁盘受到两种竞争影响:(i)关于内部二元偏心矢量的节点进攻,导致不对准(极地对准)和(ii)Kozai-Lidov(kl)偏心和倾斜度驱动的外部伴随驱动的振荡,导致一项造成的互联率造成了误解。结果取决于这些影响的时间尺度的比率。如果内部二进制扭矩占主导地位,则磁盘将与极化对齐。如果外部伴随扭矩占主导地位,则磁盘会经历KL振荡。在这种情况下,高度怪异和未对准的磁盘会被内部二进制的破坏和积聚,而某些质量则转移到外部伴侣中。但是,当扭矩相似时,电路磁盘的外部可能会发生较大的偏心振荡,而倾斜度保持接近极化。在外部伴侣的存在下,发展为极化的初始磁盘倾斜范围较小。在极地对齐过程中,磁盘破裂也更有可能暂时。 HD 98800中的恒星轨道具有参数,可以预期电路磁盘的极性比对。在没有气体的情况下,固体颗粒在半径上比气盘内部潮汐截断半径不稳定,因为KL驱动的偏心率会导致与二进制的紧密相遇。

We consider a hierarchical triple system consisting of an inner eccentric binary with an outer companion. A highly misaligned circumbinary disk around the inner binary is subject to two competing effects: (i) nodal precession about the inner binary eccentricity vector that leads to an increase in misalignment (polar alignment) and (ii) Kozai-Lidov (KL) oscillations of eccentricity and inclination driven by the outer companion that leads to a reduction in the misalignment. The outcome depends upon the ratio of the timescales of these effects. If the inner binary torque dominates, then the disk aligns to a polar orientation. If the outer companion torque dominates, then the disk undergoes KL oscillations. In that case, the highly eccentric and misaligned disk is disrupted and accreted by the inner binary, while some mass is transferred to the outer companion. However, when the torques are similar, the outer parts of the circumbinary disk can undergo large eccentricity oscillations while the inclination remains close to the polar orientation. The range of initial disk inclinations that evolve to a polar orientation is smaller in the presence of the outer companion. Disk breaking is also more likely, at least temporarily, during the polar alignment process. The stellar orbits in HD 98800 have parameters such that polar alignment of the circumbinary disk is expected. In the absence of the gas, solid particles are unstable at much smaller radii than the gas disk inner tidal truncation radius because KL driven eccentricity leads to close encounters with the binary.

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