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Spitzer's Solar System studies of comets, centaurs and Kuiper belt objects

机译:Spitzer的太阳能系统研究彗星,半人马和粉丝带物体

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摘要

In its 16 years of scientific measurements, the Spitzer Space Telescope performed ground-breaking and key infrared measurements of Solar System objects near and far. Targets ranged from the smallest planetesimals to the giant planets; Spitzer helped us to reshape our understanding of these objects while also laying the groundwork for future infrared space-based observations like those to be undertaken by the James Webb Space Telescope in the 2020s. In this Review Article, we describe how Spitzer advanced our knowledge of Solar System formation and evolution through observations of small outer Solar System planetesimals-that is, comets, centaurs and Kuiper belt objects (KBOs). Relics from the early formation era of our Solar System, these objects hold important information about the processes that created them.We group Spitzer's key contributions into three broad classes: characterization of new Solar System objects (comets D/ISON 2012 S1, C/2016 R2 and 1I/'Oumuamua); large population surveys of known objects (comets, centaurs and KBOs); and compositional studies through spectral measurements of body surfaces and emitted materials.In the Spitzer Space Telescope's 16 years of operation, it observed many Solar System objects and environments. In this first Review Article of a pair, Spitzer's insights into comets, centaurs and Kuiper belt objects-all remnants of the Solar System's formation-are summarized.
机译:在其16年的科学测量中,Spitzer Space Telescope在靠近和远处的太阳系对象进行了地面打破和关键的红外测量。目标从最小的星球到巨大的行星; Spitzer帮助我们重塑我们对这些物品的理解,同时还在2020年代在2020年代的詹姆斯韦伯太空望远镜所开展的基于红外空间的观测的基础观测的基础。在本文中,我们描述了Spitzer如何通过观察小型外太阳系统直接的观察 - 即,彗星,半人马和kbos)的知识。来自我们太阳系的早期形成时代的遗物,这些对象持有有关创建它们的流程的重要信息。我们将Spitzer的主要贡献组分为三个广泛的课程:新的太阳系对象的特征(Comets D / ISON 2012 S1,C / 2016 R2和1I /'Oumuamua);已知对象(彗星,半人马和kBo)的大人口调查;通过体面和发射材料的光谱测量和组成研究。在Spitzer Space望远镜的16年的操作中,它观察到许多太阳系对象和环境。在第一次审查一对的文章中,Spitzer的洞察彗星,半人马和Kuiper皮带对象 - 总结了太阳系的形成的所有残余物。

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  • 来源
    《Nature Astronomy》 |2020年第10期|930-939|共10页
  • 作者单位

    Johns Hopkins Univ Appl Phys Lab Laurel MD 20723 USA;

    Univ Maryland Dept Astron College Pk MD 20742 USA;

    NASA Space Sci & Astrobiol Div Ames Res Ctr Moffett Field CA USA;

    No Arizona Univ Dept Astron & Planetary Sci Flagstaff AZ 86011 USA;

    Univ Cent Florida Dept Phys Orlando FL USA|Univ Cent Florida Florida Space Inst Orlando FL 32816 USA;

    Univ Cent Florida Florida Space Inst Orlando FL 32816 USA;

    Univ Maryland Dept Astron College Pk MD 20742 USA;

    NASA Goddard Spaceflight Ctr Greenbelt MD USA|Amer Univ Washington DC 20016 USA;

    NASA Stratospher Observ Infrared Astron Univ Space Res Assoc Ames Res Ctr Moffett Field CA USA;

    No Arizona Univ Dept Astron & Planetary Sci Flagstaff AZ 86011 USA;

    Univ Cent Florida Dept Phys Orlando FL USA|Univ Cent Florida Florida Space Inst Orlando FL 32816 USA;

    Space Telescope Sci Inst 3700 San Martin Dr Baltimore MD 21218 USA;

    Planetary Sci Inst Tucson AZ USA;

    No Arizona Univ Dept Astron & Planetary Sci Flagstaff AZ 86011 USA;

    NASA Space Sci & Astrobiol Div Ames Res Ctr Moffett Field CA USA;

    Univ Calif San Diego Ctr Astrophys & Space Sci La Jolla CA 92093 USA;

    Univ Minnesota Minnesota Inst Astrophys Minneapolis MN USA;

    Univ Minnesota Minnesota Inst Astrophys Minneapolis MN USA;

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