论文标题

接下来的十年(2023-2032)对彗星挥发物的地面和空间遥感研究的关键作用(2023-2032)

The Crucial Role of Ground- and Space-Based Remote Sensing Studies of Cometary Volatiles in the Next Decade (2023-2032)

论文作者

Roth, Nathan X., Bodewits, Dennis, Bonev, Boncho, Cochran, Anita, Combi, Michael, Cordiner, Martin, Russo, Neil Dello, DiSanti, Michael, Faggi, Sara, Feaga, Lori, Fernandez, Yan, Lippi, Manuela, McKay, Adam, Knight, Matthew, Milam, Stefanie, Noonan, John W., Remijan, Anthony, Villanueva, Geronimo

论文摘要

对彗星的研究为出生,婴儿期以及太阳系的后续历史提供了独特的窗口。有强有力的证据表明,彗星融合了原始的星际材料以及加工的螺旋物质,从而在行星形成时在太阳星云的宽大中提供了对构成和普遍条件的见解。动态新的Oort Cloud Comets具有原始的ICE,它们已经从太阳中存储了数千个天文单元,并且自implacement 〜4.5 Gyr以来,其热或辐射加工却最小。周期性,动态发展的彗星,例如Halley型和木星家庭彗星,揭示了生活在一系列中心距离上花费的生活的影响,包括进入非常内部太阳系的近调通道。系统地表征这些物体天然冰组成中的信息对于理解太阳系的形成和演变,陆地行星上的有机物和水的存在,其他恒星周围的原行星磁盘中存在的化学性质以及诸如2i/borisov之类的星际插入器的性质至关重要。尽管彗星会合和样本回报任务可以为一些短期彗星的特性提供显着的见解,但进行人口级彗星研究所需的天内能力,同时对范式挑战的科学保持敏感,即单个彗星只能通过遥感的观察才能提供。在这里,我们报告了彗星挥发物的地面和空间遥感方面的最新遥控感,回顾过去十年的显着进步,阐明了未来十年中基于地面和空间的工作将解决的紧迫问题,并提倡实现这些愿望所需的技术和资源。

The study of comets affords a unique window into the birth, infancy, and subsequent history of the solar system. There is strong evidence that comets incorporated pristine interstellar material as well as processed nebular matter, providing insights into the composition and prevailing conditions over wide swaths of the solar nebula at the time of planet formation. Dynamically new Oort cloud comets harbor primitive ices that have been stored thousands of astronomical units from the Sun and have suffered minimal thermal or radiative processing since their emplacement ~4.5 Gyr ago. Periodic, more dynamically evolved comets such as the Halley-type and Jupiter-family comets reveal the effects of lives spent over a range of heliocentric distances, including perihelion passages into the very inner solar system. Systematically characterizing the information imprinted in the native ice compositions of these objects is critical to understanding the formation and evolution of the solar system, the presence of organic matter and water on the terrestrial planets, the chemistry present in protoplanetary disks around other stars, and the nature of interstellar interlopers such as 2I/Borisov. Although comet rendezvous and sample return missions can provide remarkable insights into the properties of a few short-period comets, the on-sky capacity necessary to perform population-level comet studies while simultaneously remaining sensitive to the paradigm-challenging science that individual comets can reveal can only be provided by remote sensing observations. Here we report the state-of-the-art in ground- and space-based remote sensing of cometary volatiles, review the remarkable progress of the previous decade, articulate the pressing questions that ground- and space-based work will address over the next ten years, and advocate for the technology and resources necessary to realize these aspirations.

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