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Isolating auroral FUV emission lines using compact, broadband instrumentation

机译:使用紧凑的宽带仪器隔离极光FUV发射线

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摘要

Images of auroral emissions at far ultraviolet (FUV, 122-200 nm) wavelengths are useful tools with which to study magnetospheric-ionospheric coupling, as the scattered sunlight background in this region is low, allowing both dayside and nightside auroras to be imaged simultaneously. The ratio of intensities between certain FUV emission lines or regions can be used to characterise the precipitating particles responsible for auroral emissions, and hence is a useful diagnostic of magnetospheric dynamics. Here, we describe how the addition of simple transmission filters to a compact broadband imager design allows far ultraviolet emission ratios to be deduced while also providing large-scale instantaneous images of the aurora. The low mass and volume of such an instrument would make it well-suited for both small satellite Earth-orbiting missions and larger outer planet missions from which it could be used to characterise the tenuous atmospheres observed at several moons, as well as studying the auroral emissions of the gas giants. We present a study to investigate the accuracy of a technique to allow emission line ratio retrieval, as applied to the OI 130.4 nm and 135.6 nm emissions at Ganymede. The ratio of these emissions provides information about the atmospheric composition, specifically the relative abundances of O and O_2. Using modelled FUV spectra representative of Ganymede's atmosphere, based on observations by the Hubble Space Telescope (HST) Space Telescope Imaging Spectrograph (STIS), we find that the accuracy of the retrieved ratios is a function of the magnitude of the ratio, with the best measurements corresponding to a ratio of ~1.3.
机译:远紫外(FUV,122-200 nm)波长下的极光发射图像是研究磁层-电离层耦合的有用工具,因为该区域的散射阳光背景很低,因此可以同时对白天和夜晚的极光进行成像。某些FUV发射线或区域之间的强度比可用于表征负责极光发射的沉淀粒子,因此是磁层动力学的有用诊断方法。在这里,我们描述了如何在紧凑型宽带成像仪设计中增加简单的透射滤光片,从而可以推断出远紫外线发射率,同时还能提供极光的大规模瞬时图像。这种仪器的质量和体积小,使其非常适合小型卫星地球轨道飞行任务和大型外行星飞行任务,从中可以用来表征在几颗卫星上观测到的微弱大气以及研究极光。天然气巨头的排放量。我们目前正在进行一项研究,以研究允许将发射谱线比例检索技术应用于Ganymede的OI 130.4 nm和135.6 nm发射的准确性。这些排放的比例提供了有关大气成分的信息,特别是O和O_2的相对丰度。根据哈勃太空望远镜(HST)太空望远镜成像光谱仪(STIS)的观测结果,使用代表Ganymede大气层的模拟FUV光谱,我们发现,检索到的比率的准确性是比率大小的函数,最好测量值对应于〜1.3的比率。

著录项

  • 来源
    《Planetary and space science 》 |2014年第11期| 291-298| 共8页
  • 作者单位

    Department of Physics and Astronomy, University of Leicester, University Road, Leicester, UK;

    Department of Physics and Astronomy, University of Leicester, University Road, Leicester, UK;

    Department of Physics and Astronomy, University of Leicester, University Road, Leicester, UK;

    LPAP, Institut d'Astrophysique et de Geophysique, Universite de Liege, Liege, Belgium;

    Center for Space Physics, Boston University, 957 Commonwealth Ave., Boston, MA 02215, USA;

    Centre Spatial de Liege, Universite de Liege, Liege, Belgium;

    LPAP, Institut d'Astrophysique et de Geophysique, Universite de Liege, Liege, Belgium;

    Department of Physics and Astronomy, University of Leicester, University Road, Leicester, UK;

    Department of Physics and Astronomy, University of Leicester, University Road, Leicester, UK;

    Centre Spatial de Liege, Universite de Liege, Liege, Belgium;

    Centre Spatial de Liege, Universite de Liege, Liege, Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    FUV imaging; FUV spectroscopy; Ganymede; Aurora; Atmospheres;

    机译:FUV成像;FUV光谱;木卫三;极光;气氛;

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