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首页> 外文期刊>The astronomical journal >Formation of Close-in Super-Earths by Giant Impacts: Effects of Initial Eccentricities and Inclinations of Protoplanets
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Formation of Close-in Super-Earths by Giant Impacts: Effects of Initial Eccentricities and Inclinations of Protoplanets

机译:巨大撞击形成近距离的超地球:初始偏心距和原行星倾角的影响

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Recent observations have revealed the eccentricity and inclination distributions of close-in super-Earths. These distributions have the potential to constrain their formation processes. In the in situ formation scenario, the eccentricities and inclinations of planets are determined by gravitational scattering and collisions between protoplanets on the giant impact stage. We investigate the effect of the initial eccentricities and inclinations of protoplanets on the formation of close-in super-Earths. We perform N-body simulations of protoplanets in gas-free disks, changing the initial eccentricities and inclinations systematically. We find that while the eccentricities of protoplanets are well relaxed through their evolution, the inclinations are not. When the initial inclinations are small, they are not generally pumped up since scattering is less effective and collisions occur immediately after orbital crossing. On the other hand, when the initial inclinations are large, they tend to be kept large since collisional damping is less effective. Not only the resultant inclinations of planets, but also their number, eccentricities, angular momentum deficit, and orbital separations are affected by the initial inclinations of protoplanets.
机译:最近的观察表明,近地超地球的偏心率和倾斜度分布。这些分布可能会限制其形成过程。在原位形成情况下,行星的偏心率和倾斜度是由重力散射和巨大撞击阶段原行星之间的碰撞所决定的。我们研究了原始行星的初始偏心率和倾角对近距离超地球形成的影响。我们在无气磁盘中进行原行星的N体模拟,系统地改变了初始偏心率和倾斜度。我们发现,虽然原行星的离心率在其演化过程中得到了很好的缓解,但其倾角却没有。当初始倾角较小时,由于散射效果较差,并且在轨道交叉后立即发生碰撞,因此通常不会将其泵起。另一方面,当初始倾角较大时,由于碰撞阻尼效果较差,它们倾向于保持较大。原行星的初始倾角不仅影响行星的最终倾角,而且其数量,偏心率,角动量赤字和轨道间隔也受到影响。

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