论文标题

专用太阳系太空望远镜启用了科学

The science enabled by a dedicated solar system space telescope

论文作者

Young, Cindy L., Wong, Michael H., Sayanagi, Kunio M., Curry, Shannon, Jessup, Kandis L., Becker, Tracy, Hendrix, Amanda, Chanover, Nancy, Milam, Stephanie, Holler, Bryan J., Holsclaw, Gregory, Peralta, Javier, Clarke, John, Spencer, John, Kelley, Michael S. P., Luhmann, Janet, MacDonnell, David, Vervack Jr., Ronald J., Retherford, Kurt, Fletcher, Leigh N., de Pater, Imke, Vilas, Faith, Feaga, Lori, Siegmund, Oswald, Bell, Jim, Delory, Gregory, Pitman, Joseph, Greathouse, Thomas, Wishnow, Edward, Schneider, Nicholas, Lillis, Robert, Colwell, Joshua, Bowman, Lynn, Lopes, Rosaly M. C., McGrath, Melissa, Marchis, Franck, Cartwright, Richard, Poston, Michael J.

论文摘要

美国国家天体生物学和行星科学委员会(CAPS)提出了一项建议,以研究行星科学的大型/中产阶级专用太空望远镜,超越了在愿景和航行中认可的发现类别的专用行星望远镜。这样的望远镜将观察整个太阳系的目标,并吸引了广泛的科学界。它将确保可以扩展对哈勃太空望远镜(HST)革命的可见和紫外线的高分辨率,高敏性观察。太阳能系统科学的专用望远镜将:(a)改变我们对太阳系中时间依赖现象的理解,目前无法在计划中研究和访问新目标,并且(b)启用对整个太阳能系统的次要体系的全面调查和光谱表征,这需要大量分配现有设施的大量分配。要探索的时间域现象至关重要的是高空间分辨率UV可见观察结果。本文提出了科学主题和关键问题,这些问题需要持久的空间望远镜专门针对行星科学,这些望远镜可以在所需的节奏上捕获高质量,一致的数据,这些数据没有陆地气氛的影响以及在观察设施之间的差异。这样的望远镜通过将天体物理学资产的行星发现在时间环境中进行,并使用较大的望远镜触发详细的后续观测来,与天体物理设施具有出色的协同作用。望远镜将通过在时间活动较长的记录和较大的样本人群记录的背景下,将这种有针对性的任务的结果放置在整个太阳系中的冰巨头,海洋世界和次要机构的未来任务。

The National Academy Committee on Astrobiology and Planetary Science (CAPS) made a recommendation to study a large/medium-class dedicated space telescope for planetary science, going beyond the Discovery-class dedicated planetary space telescope endorsed in Visions and Voyages. Such a telescope would observe targets across the entire solar system, engaging a broad spectrum of the science community. It would ensure that the high-resolution, high-sensitivity observations of the solar system in visible and UV wavelengths revolutionized by the Hubble Space Telescope (HST) could be extended. A dedicated telescope for solar system science would: (a) transform our understanding of time-dependent phenomena in our solar system that cannot be studied currently under programs to observe and visit new targets and (b) enable a comprehensive survey and spectral characterization of minor bodies across the solar system, which requires a large time allocation not supported by existing facilities. The time-domain phenomena to be explored are critically reliant on high spatial resolution UV-visible observations. This paper presents science themes and key questions that require a long-lasting space telescope dedicated to planetary science that can capture high-quality, consistent data at the required cadences that are free from effects of the terrestrial atmosphere and differences across observing facilities. Such a telescope would have excellent synergy with astrophysical facilities by placing planetary discoveries made by astrophysics assets in temporal context, as well as triggering detailed follow-up observations using larger telescopes. The telescope would support future missions to the Ice Giants, Ocean Worlds, and minor bodies across the solar system by placing the results of such targeted missions in the context of longer records of temporal activities and larger sample populations.

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