论文标题

小行星带的起源和动态演化

Origin and dynamical evolution of the asteroid belt

论文作者

Raymond, Sean N., Nesvorny, David

论文摘要

在行星形成期间和之后,小行星带动态形状。尽管代表了宽阔的稳定轨道环,但皮带的含量少于千分之一。小行星轨道在偏心和倾斜度的范围内动态激发,它们的组合物是多种多样的,其内部皮带中干燥物体的一般趋势以及外带中更多水富的物体。在这里,我们回顾了小行星带的起源和动态历史的模型。经典的观点是,皮带诞生于行星中的几个地球肿块,然后大量耗尽。但是,很少有小行星区域中形成的行星很少,并且皮带的故事是植入而不是耗尽的。许多过程可能已经植入了太阳系不同区域的小行星,动态删除了它们并激发了它们的轨道。在气体磁盘阶段,这些包括巨型行星生长和迁移以及散布世俗共振的影响。气盘阶段之后,这些阶段包括驻留的行星胚胎,巨型行星轨道中的混乱,巨型行星不稳定和长期动力学演变。太阳系形成的不同全局模型意味着与小行星带的动力学历史相反。 Vesta和Ceres可能是从太阳系的相对区域植入的 - 木星 - 萨特恩地区的CERE和陆地行星区域的Vesta的CERES,因此可以代表截然不同的地层条件。

The asteroid belt was dynamically shaped during and after planet formation. Despite representing a broad ring of stable orbits, the belt contains less than one one-thousandth of an Earth mass. The asteroid orbits are dynamically excited with a wide range in eccentricity and inclination and their compositions are diverse, with a general trend toward dry objects in the inner belt and more water-rich objects in the outer belt. Here we review models of the asteroid belt's origins and dynamical history. The classical view is that the belt was born with several Earth masses in planetesimals, then strongly depleted. However, it is possible that very few planetesimals ever formed in the asteroid region and that the belt's story is one of implantation rather than depletion. A number of processes may have implanted asteroids from different regions of the Solar System, dynamically removed them, and excited their orbits. During the gaseous disk phase these include the effects of giant planet growth and migration and sweeping secular resonances. After the gaseous disk phase these include scattering from resident planetary embryos, chaos in the giant planets' orbits, the giant planet instability, and long-term dynamical evolution. Different global models for Solar System formation imply contrasting dynamical histories of the asteroid belt. Vesta and Ceres may have been implanted from opposite regions of the Solar System -- Ceres from the Jupiter-Saturn region and Vesta from the terrestrial planet region -- and could therefore represent very different formation conditions.

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