论文标题

矮星山周围的环形形成过程的N体模拟

N-body Simulations of Ring Formation Process around the Dwarf Planet Haumea

论文作者

Sumida, Iori, Ishizawa, Yuya, Hosono, Natsuki, Sasaki, Takanori

论文摘要

Haumea是唯一带有环的跨北河对象。该环处于带有三轴形状的Haumea旋转周期的3:1自旋轨道共振的位置。据认为,Haumea周围的非轴对称重力场会影响环的动力学。但是,尚未阐明环形成过程。在这项研究中,我们详细分析了Haumea的潜在环形情况。我们首先计算了三轴椭圆形周围的重力场,并估计了使用融合了随时间变化的引力场的模拟,围绕Haumea旋转的物体可以稳定存在的距离。该模拟的结果表明,物体的轨迹就在其当前环位置内变得不稳定。接下来,我们通过分析衍生出Roche半径,以围绕三轴椭圆形旋转的刚性体,并表明Roche Radius可以接近当前环位置。此外,作为一项参数研究,我们使用碎石桩恢复系数作为变量进行了N体模拟。结果表明,根据许多参数,Roche半径的位置接近Haumea环的当前位置。基于这些发现,我们可以假设在轨道不稳定区域和罗氏半径的边界之间形成的环中存在很高的环。这项研究中介绍的方案可以帮助解释豪梅亚环形成的过程。

Haumea is the only known trans-Neptunian object with a ring. The ring is in a position that causes a 3:1 spin-orbit resonance with the rotational period of Haumea, which has a triaxial shape. The non-axisymmetric gravitational field around Haumea is thought to affect the dynamics of the ring; however, the process of ring formation has not been elucidated. In this study, we analyze in some detail a potential ring formation scenario for Haumea. We first calculated the gravitational field around the triaxial ellipsoid and estimated the distance at which an object revolving around Haumea can exist stably using simulation that incorporated the time-varying gravitational field. The results of this simulation showed that the trajectory of the object became unstable just inside its current ring position. Next, we analytically derived the Roche radius for a rigid body revolving around a triaxial ellipsoid and showed that the Roche radius could be near the current ring position. Furthermore, as a parameter study, we performed N-body simulations using the coefficient of rubble pile restitution as a variable. Results demonstrated that, according to numerous parameters, the position of the Roche radius was near the current position of Haumea's ring. Based on these findings, we can assume that there is a high possibility that the ring formed in the region between the boundary of the unstable region of the orbit and the Roche radius. The scenario presented in this study could help explain the process by which Haumea's ring formed.

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