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首页> 外文期刊>CEAS Space Journal >Fourier transform spectrometers for remote sensing of planetary atmospheres and surfaces
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Fourier transform spectrometers for remote sensing of planetary atmospheres and surfaces

机译:傅里叶变换光谱仪,用于遥感行星氛围和表面

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AbstractIn planetary research, Fourier transform infrared spectrometers (FTIR) solve a number of important scientific goals related both to the atmosphere and to the surface sounding. For remote orbital measurements, these goals are the thermal sounding of the atmosphere using, in particular, the 15-?m CO2band, sensitive detections of minor gaseous species and aerosol characterization. FTIR can address similar atmospheric science goals when observing from a planetary surface allowing for better-resolved boundary layer and achieving greater accuracy (longer integration) for minor species detection. For studies of planetary surfaces, characterization of mineralogical composition in a wide IR range including sensitive measurements of hydration of the soil on airless bodies can be done. We outline a family of FTIR instruments dedicated to studies of Mars and the Moon. TIRVIM is a channel of ACS on ExoMars TGO (in orbit around Mars since October 2016). It is a 2-inch interferometer for nadir and solar occultation measurements of Mars’ atmosphere. It covers a spectral range of 1.7–17??m with spectral resolution up to 0.13?cm?1. LUMIS is a similar instrument for Luna-Resource Orbiter (Luna-26) Roscosmos mission dedicated to the search for hydration of the lunar regolith in the 6-?m band. The spectral range of LUMIS is broad (1.7–17??m), but its sensitivity is optimized for the 4–8??m region. The spectral resolution is 50?cm?1. We also describe recent developments focused on technical solutions for miniaturized FTIR instruments with a very high spectral resolution (0.05?cm?1and higher). The prototype targets measurements of minor atmospheric species from the surface of Mars using the Sun tracking. One important task is to provide a high precision of interferometer’s mirror movement. Another task is the development of a precise two-coordinate mechanism to seek for and follow the Sun.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>在行星研究中,傅里叶变换红外光谱仪(FTIR)解决大气和表面探测的许多重要的科学目标。对于远程轨道测量,这些目标是使用的大气热探测,特别是15-ΔMC<下标> 2 带,次要气态物种和气溶胶表征的敏感性检测。在从行星表面观察时,FTIR可以解决类似的大气科学目标,允许更好地解析的边界层并实现次要物种检测的更高精度(更长的集成)。对于行星表面的研究,可以进行覆盖IR范围内的矿物学组合物的表征,包括在无气体上的土壤水合水合的敏感测量。我们概述了一家致力于对火星和月亮研究的FTIR乐器家族。 Tirvim是exoMars tgo上的ACS渠道(自2016年10月以来火星周围的轨道)。它是MARS气氛的Nadir和太阳掩星测量的2英寸干涉仪。它涵盖光谱范围为1.7-17 ?? m,光谱分辨率高达0.13Ω·cm <上标>?1 。 Lumis是一个类似的仪器,用于Luna-Resource Orbiter(Luna-26)Roscosmos任务,专门用于搜索在6-?M频段中的月球重新旋转的水合。 LUMIS的光谱范围宽(1.7-17Ωm),但其灵敏度为4-8Ω米地区进行了优化。光谱分辨率为50?cm <上标>?1 。我们还描述了最近的开发,专注于具有非常高光谱分辨率的小型化FTIR仪器技术解决方案(0.05?cm <上标>?1 和更高)。使用太阳跟踪,原型针对来自火星表面的轻微大气种类的测量。一个重要的任务是提供干涉仪的镜像运动的高精度。另一项任务是开发一个精确的双坐标机制来寻求和遵循太阳。 ]]>

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