新视野号之后的冥王星系统

S. Stern, W. Grundy, W. McKinnon, H. Weaver, L. Young
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引用次数: 78

摘要

2015年中期,新视野号(NH)飞掠冥王星-卡戎双星及其周围四颗小卫星系统,彻底改变了我们对这颗遥远行星及其卫星的认识。除了提供丰富的地质、成分和大气数据集之外,NH还证明了冥王星在过去4+ Gyr中具有令人惊讶的地质和气候活跃,并且这颗行星展示了非常复杂的大气现象和地质表达范围,其丰富性可与火星相媲美。相比之下,冥王星的行星大小的大卫星卡戎,虽然地质结构也很复杂,但没有探测到活跃的表面挥发物,没有可探测到的大气,颜色更柔和,反照率更低,只有古老的地形。冥王星的四颗小卫星环绕着冥卫一运行,这一系统本身在动态上就很复杂,在地质上也很有趣。在这里,我们回顾了在NH之前对冥王星系统的了解,以及它教给我们的关于冥王星系统的具体知识,以及通过推断,柯伊伯带中其他小行星的知识。我们继续研究柯伊伯带探索的自然下一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Pluto System After New Horizons
The New Horizons (NH) flyby of the Pluto–Charon binary planet and its system of four small surrounding satellites in mid-2015 revolutionized our knowledge of this distant planet and its moons. Beyond providing rich geo-logical, compositional, and atmospheric data sets, NH demonstrated that Pluto has been surprisingly geologically and climatologically active throughout the past 4+ Gyr and that the planet exhibits a remarkably complex range of atmospheric phenomenology and geological expressions that rival Mars in their richness. In contrast, Pluto's large, planet-sized satellite Charon, though also geologically complex, has no detected active surface volatiles, has no detectable atmosphere, has much more muted colors, has lower albedo, and exhibits only ancient terrains. Pluto's system of four small satellites orbiting outside of Charon is itself dynamically complex and geologically interesting. Here, we review both what was known about the Pluto system before NH and what it has taught us about the Pluto system specifically and, by inference, other small planets in the Kuiper Belt. We go on to examine the natural next steps in Kuiper Belt exploration.
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