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Compositional homogeneity in the fragmented comet 73P/Schwassmann-Wachmann 3

机译:碎片彗星73P / Schwassmann-Wachmann 3的成分均一性

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The remarkable compositional diversity of volatile ices within comets can plausibly be attributed to several factors, including differences in the chemical, thermal and radiation environments in comet-forming regions, chemical evolution during their long storage in reservoirs far from the Sun, and thermal processing by the Sun after removal from these reservoirs. To determine the relevance of these factors, measurements of the chemistry as a function of depth in cometary nuclei are critical. Fragmenting comets expose formerly buried material, but observational constraints have in the past limited the ability to assess the importance of formative conditions and the effects of evolutionary processes on measured composition. Here we report the chemical composition of two distinct fragments of 73P/Schwassmann-Wachmann 3. The fragments are remarkably similar in composition, in marked contrast to the chemical diversity within the overall comet population and contrary to the expectation that short-period comets should show strong compositional variation with depth in the nucleus owing to evolutionary processing from numerous close passages to the Sun. Comet 73P/Schwassmann-Wachmann 3 is also depleted in the most volatile ices compared to other comets, suggesting that the depleted carbon-chain chemistry seen in some comets from the Kuiper belt reservoir is primordial and not evolutionary.
机译:彗星内挥发性冰的显着组成多样性可能归因于以下几个因素,包括彗星形成区的化学,热和辐射环境的差异,在远离太阳的储层中长期储存期间的化学演化以及热加工过程。从这些水库中移出后的太阳。为了确定这些因素的相关性,化学计量作为彗核深度的函数至关重要。破碎的彗星暴露了原先被掩埋的物质,但过去的观测条件限制了评估形成条件的重要性以及进化过程对测得组成的影响的能力。在这里,我们报告了73P / Schwassmann-Wachmann 3两个不同片段的化学组成。这些片段的组成非常相似,这与整个彗星种群内的化学多样性形成鲜明对比,并且与短期彗星应显示的预期相反由于从无数次近距离进入太阳的进化过程,核中深度的成分变化很大。与其他彗星相比,73P / Schwassmann-Wachmann 3彗星在最易挥发的冰块中也被消耗掉,这表明在柯伊伯带储层的某些彗星中看到的碳链化学耗尽是原始的,而不是进化的。

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