论文标题

小行星三重系统2001 SN263:表面特征和动力环境

Asteroid triple system 2001 SN263 : surfaces characteristics and dynamical environment

论文作者

Winter, O. C., Valvano, G., Moura, T. S., Borderes-Motta, G., Amarante, A., Sfair, R.

论文摘要

(153591)2001 SN263小行星系统是第一个巴西星际空间任务的目标,是NEAS人群中已知的三个三重系统之一。任务目标之一是收集有关该系统形成的数据。对这些数据的分析将有助于研究该系统组件(Alpha,beta和Gamma)的物理和动态结构,以找到与其起源相关的遗迹。在这项工作中,我们假设2001 SN263系统组件的不规则形状是均匀的密度多面体,并在计算上研究了这些物体产生的重力场。目的是探索每个组件周围表面和环境的动态特征。然后,考虑到旋转速度,我们通过数量几何高度,倾斜,地球电势,斜率,表面加速度等数量分析它们的地形特征。此外,对身体周围环境的研究使得构建零速度曲线成为可能,从而划定了平衡点的位置。 Alpha组件具有12个平衡点的特殊数,它们都非常靠近其表面。在Beta和Gamma的情况下,我们发现四个平衡点离它们的表面不太近。然后,在其平衡点周围进行数值实验,我们确定了一个稳定区域的位置和大小,这与β周围的平衡点有关。最后,我们整合了α周围的粒子球云,并确定了α粒子表面的位置是掉落的。

The (153591) 2001 SN263 asteroid system, target of the first Brazilian interplanetary space mission, is one of the known three triple systems within the population of NEAs. One of the mission objectives is to collect data about the formation of this system. The analysis of these data will help in the investigation of the physical and dynamical structures of the components (Alpha, Beta and Gamma) of this system, in order to find vestiges related to its origin. In this work, we assume the irregular shape of the 2001 SN263 system components as uniform density polyhedra and computationally investigate the gravitational field generated by these bodies. The goal is to explore the dynamical characteristics of the surface and environment around each component. Then, taking into account the rotational speed, we analyze their topographic features through the quantities geometric altitude, tilt, geopotential, slope, surface accelerations, among others. Additionally, the investigation of the environment around the bodies made it possible to construct zero-velocity curves, which delimit the location of equilibrium points. The Alpha component has a peculiar number of 12 equilibrium points, all of them located very close to its surface. In the cases of Beta and Gamma, we found four equilibrium points not so close to their surfaces. Then, performing numerical experiments around their equilibrium points, we identified the location and size of just one stable region, which is associated with an equilibrium point around Beta. Finally, we integrated a spherical cloud of particles around Alpha and identified the location on the surface of Alpha were the particles have fallen.

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