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首页> 外文期刊>Journal of geophysical research. Planets >Evidence for geologic processes on comets
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Evidence for geologic processes on comets

机译:彗星地质过程的证据

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摘要

Spacecraft missions have resolved the nuclei of six periodic comets and revealed a set of geologically intriguing and active small bodies. The shapes of these cometary nuclei are dominantly bilobate reflecting their formation from smaller cometesimals. Cometary surfaces include a diverse set of morphologies formed from a variety of mechanisms. Sublimation of ices, driven by the variable insolation over the time since each nucleus was perturbed into the inner Solar System, is a major process on comets and is likely responsible for quasi-circular depressions and ubiquitous layering. Sublimation from near-vertical walls is also seen to lead to undercutting and mass wasting. Fracturing has only been resolved on one comet but likely exists on all comets. There is also evidence for mass redistribution, where material lifted off the nucleus by subliming gases is deposited onto other surfaces. It is surprising that such sedimentary processes are significant in the microgravity environment of comets. There are many enigmatic features on cometary surfaces including tall spires, kilometer-scale flows, and various forms of depressions and pits. Furthermore, even after accounting for the differences in resolution and coverage, significant diversity in landforms among cometary surfaces clearly exists. Yet why certain landforms occur on some comets and not on others remains poorly understood. The exploration and understanding of geologic processes on comets is only beginning. These fascinating bodies will continue to provide a unique laboratory for examining common geologic processes under the uncommon conditions of very high porosity, very low strength, small particle sizes, and near-zero gravity.
机译:航天器任务已经解决了六个周期性彗星的核,并揭示了一组地质上有趣和活跃的小体。这些彗星核的形状主要反映了它们从较小的彗星形成的形成。彗星表面包括由多种机制形成的各种形态。由于每个核都被扰动到内部太阳系以来,这是由可变的日光沉降驱动的,这是彗星的主要过程,并且很可能导致准圆形凹陷和无处不在的分层。还可以看到近垂墙的升华会导致降低和质量浪费。断裂仅在一个彗星上解决,但可能存在于所有彗星上。也有证据表明质量重新分布,其中通过升华气体沉积在其他表面上,从核中取出的材料。令人惊讶的是,这种沉积过程在彗星的微重力环境中很重要。彗星表面上有许多神秘的特征,包括高尖峰,公里尺度的流动以及各种形式的抑郁症和凹坑。此外,即使考虑到解决方案和覆盖范围的差异,彗星表面之间地面的显着多样性也显然存在。然而,为什么某些地貌发生在某些彗星上而不是在其他彗星上仍然知之甚少。对彗星的地质过程的探索和理解才刚刚开始。这些引人入胜的身体将继续提供独特的实验室,以检查在非常高的孔隙率,非常低的强度,小粒径和接近零重力的罕见条件下的常见地质过程。

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