论文标题

Neptune的环弧线限制在辅助卫星上:通过太阳辐射通过太阳辐射的尘埃进化

Neptune's ring arcs confined by coorbital satellites: dust orbital evolution through solar radiation

论文作者

Winter, Silvia Maria Giuliatti, Madeira, Gustavo, Sfair, Rafael

论文摘要

Voyager 2图像证实了海王星周围存在环弧。这些结构需要一种限制机制来限制其碰撞,耗散力和差异开普勒运动引起的扩散。在这里,我们报告了由海王星,卫星加拉性卫星,防尘环颗粒和假设的共晶卫星形成的系统的数值模拟的结果。该动态系统描述了最近由四个共晶卫星组成的限制机制,负责弧的方位角限制,而加拉蒂亚则对其径向限制做出了反应。在数值模拟之后,将颗粒分为四组:留在弧中的颗粒,瞬态颗粒,将弧留在Adams环上的颗粒以及与共晶卫星碰撞的颗粒。我们的结果表明,在所有弧线中,较小颗粒的寿命最多为50年。 100年后,弧中仍存在约20%的较大颗粒。从我们的数值模拟中,颗粒应在30年后所有弧线中存在,到目前为止发现弧之间的周期。除非弧形由不同的粒径形成,否则我们的结果无法解释领先的弧,自由和勇气的消失。由于星际碎屑之间的碰撞到共轨道卫星的表面上,对尘埃生产的分析排除了以下假​​设:小卫星接近或在弧线中,结构可能是其来源。

Voyager 2 images confirmed the presence of ring arcs around Neptune. These structures need a confinement mechanism to constrain their spreading due to collisions, dissipative forces, and differential keplerian motion. Here we report the results of a set of numerical simulations of the system formed by Neptune, the satellite Galatea, dust ring particles, and hypothetical co-orbital satellites. This dynamical system depicts a recent confinement mechanism formed by four co-orbital satellites being responsible for the azimuthal confinement of the arcs, while Galatea responds for their radial confinement. After the numerical simulations, the particles were divided into four groups: particles that stay in the arcs, transient particles, particles that leave the arcs to the Adams ring, and particles that collide with the co-orbital satellites. Our results showed that in all arcs the lifetime of the smaller particles is at most 50 years. After 100 years about 20% of the total amount of larger particles is still present in the arcs. From our numerical simulations, the particles should be present in all arcs after 30 years, the period between the discovery of the arcs up to now. Our results can not explain the disappearance of the leading arcs, Liberte and Courage unless the arcs are formed by different particle sizes. Analysis of the dust production, due to collisions between interplanetary debris onto the surface of the co-orbital satellites, ruled out the hypothesis that small satellites close to or in the arc the structure could be its source.

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