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A UNIFIED THEORY FOR THE EFFECTS OF STELLAR PERTURBATIONS AND GALACTIC TIDES ON OORT CLOUD COMETS

机译:星云摄动和星系潮汐对卵白云彗星影响的统一理论

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We examine the effects of passing field stars on the angular momentum of a nearly radial orbit of an Oort cloud comet bound to the Sun. We derive the probability density function of the change in angular momentum from one stellar encounter, assuming a uniform and isotropic field of perturbers. We show that the total angular momentum follows a Lévy flight, and determine its distribution function. If there is an asymmetry in the directional distribution of perturber velocities, the marginal probability distribution of each component of the angular momentum vector can be different. The constant torque attributed to Galactic tides arises from a non-cancellation of perturbations with an impact parameter of order the semimajor axis of the comet. When the close encounters are rare, the angular momentum is best modeled by the stochastic growth of stellar encounters. If trajectories passing between the comet and the Sun occur frequently, the angular momentum exhibits the coherent growth attributed to the Galactic tides.
机译:我们研究了经过的场星对与太阳结合的奥尔特云彗星近乎径向轨道的角动量的影响。我们假设一个均匀且各向同性的扰动场,从一次恒星相遇中推导出角动量变化的概率密度函数。我们证明了总角动量遵循列维飞行,并确定了其分布函数。如果扰动速度的方向分布不对称,则角动量矢量的每个分量的边际概率分布可能会不同。归因于银河潮汐的恒定转矩来自摄动的非抵消性,其冲击参数约为彗星半长轴。当近距离相遇很少时,最好用恒星相遇的随机增长来模拟角动量。如果在彗星和太阳之间经过的轨迹频繁出现,则角动量会显示出归因于银河潮汐的连贯增长。

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