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A THERMAL EVOLUTION MODEL OF CENTAUR 10199 CHARIKLO

机译:CENTAUR 10199 CHARIKLO的热演化模型

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Centaur 10199 Chariklo appears to have a varying spectral behavior. While three different spectral studies detect the presence of water ice at the surface, two more recent studies do not detect any absorption bands. In this article, we consider the possibility that Chariklo undergoes cometary activity that could be responsible for the observed spectral variations. We simulate its thermal evolution, finding that crystalline water ice should be present in the object core, and amorphous water ice should be found at the surface. Upon entering the inner solar system, Chariklo might experience some cometary activity due to ice crystallization if the obliquity is high, due to the adjustment of the internal structure to a new thermal equilibrium. No other activity is expected from this source, unless an external source like an impact provides the heat needed. In the case of such an event, we find that dust emitted in a coma is unlikely to be responsible for the observed spectral variations. In contrast, water ice grains in the coma would reproduce this pattern, meaning that the water ice detected after Chariklo's discovery was present in these grains and not on the object surface. Nonetheless, any activity would require an external additional heat source to be triggered, through an outburst, which might favor the spatial variations hypothesis.
机译:Centaur 10199 Chariklo似乎具有变化的光谱行为。虽然三项不同的光谱研究检测到地表水冰的存在,但另外两项最新研究并未检测到任何吸收带。在本文中,我们考虑了Chariklo进行彗星活动的可能性,该活动可能导致观测到的光谱变化。我们模拟了它的热演化过程,发现在目标核心中应该存在结晶水冰,而在表面上应该存在非晶水冰。进入内部太阳系后,如果倾斜度很高,由于内部结构调整到新的热平衡状态,Chariklo可能会由于冰的结晶而经历一些彗星活动。除非该外部来源(例如撞击)提供所需的热量,否则不会期望此来源进行其他活动。在这种情况下,我们发现昏迷中散发的灰尘不太可能造成观察到的光谱变化。相反,昏迷中的水冰颗粒会重现这种模式,这意味着在查利克洛发现后发现的水冰存在于这些颗粒中,而不是在物体表面。但是,任何活动都需要通过爆发来触发外部额外的热源,这可能会支持空间变化假说。

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