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Compact remote multisensing instrument for planetary surfaces and atmospheres characterization

机译:紧凑型遥感仪,用于行星表面和大气表征

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This paper describes a prototype feasibility demonstration system of a multipurpose Raman-fluorescence spectrograph and compact lidar system suitable for planetary sciences missions. The key measurement features of this instrument are its abilities to: i) detect minerals and organics at low levels in the dust constituents of surface, subsurface material and rocks on Mars, ii) determine the distribution of trace fluorescent ions with time-resolved fluorescence spectroscopy to learn about the geological conditions under which these minerals formed, iii) inspect material toxicity from a mobile robotic platform during local site characterization, iv) measure dust aerosol and cloud distributions, v) measure near-field atmospheric carbon dioxide, and vi) identify surface CO_2-ice, surface water ice, and surface or subsurface methane hydrate. This prototype instrument and an improved follow-on design are described and have the capability for scientific investigations discussed above, to remotely investigate geological processes from a robotic platform at more than a 20-m radial distance with potential to go beyond 100 m. It also provides single wavelength (532 nm) aerosol/cloud profiling over very long ranges (>10 km with potential to 20 km). Measurement results obtained with this prototype unit from a robotic platform and calculated potential performance are presented in this paper.
机译:本文介绍了适用于行星科学任务的多用途拉曼荧光光谱仪和紧凑型激光雷达系统的原型可行性演示系统。该仪器的主要测量功能是:i)在火星表面,地下物质和岩石的粉尘成分中检测低含量的矿物质和有机物,ii)用时间分辨荧光光谱法测定痕量荧光离子的分布了解这些矿物形成的地质条件,iii)在局部现场表征期间检查移动机器人平台产生的物质毒性,iv)测量粉尘气溶胶和云的分布,v)测量近场大气二氧化碳,vi)识别地表CO_2-冰,地表水冰以及地表或地下甲烷水合物。描述了这种原型仪器和改进的后续设计,并具有上述科学调查的能力,可以从机器人平台以超过20 m的径向距离远程研究地质过程,并且有可能超过100 m。它还在很长的距离范围内(> 10 km,可能到20 km)提供单波长(532 nm)气溶胶/云分布图。本文介绍了使用此原型机从机器人平台获得的测量结果以及计算出的潜在性能。

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