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A remote Raman system for planetary exploration: Evaluating remote Raman efficiency

机译:行星勘探远程拉曼系统:评估远程拉曼效率

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Landers and rovers are important to solar system exploration, and we are designing and analyzing a remote Raman system for a planetary mission. Raman spectroscopy is a common and powerful technique for materials analysis. We have developed a system that enables Raman spectroscopic measurements at distances of more than 50 meters. In order to design a flight instrument, we need to quantitatively understand the Raman efficiency of natural surfaces. We define remote Raman efficiency as the ratio of radiant exitance leaving a natural surface to the irradiance of the incident laser. The radiant exitance of a natural surface is the product of the sample radiance (minus background), the projected solid angle in steradians, and the spectral bandwidth of the spectrometer. The laser irradiance is the product of the energy of the laser (mj/pulse) and the pulse rate (Hz), divided by the area of the laser spot. We have determined the remote Raman efficiency for several minerals and rocks: dolomite marble, dacite, milky quartz, anorthosite, calcite, biotite granite, magnesite, chert, gypsum (selenite), fibrous gypsum, and sandstone. By quantifying the remote Raman efficiency, we will be able to determine the number and quality of spectra that a remote Raman system can acquire on a planetary surface where available power is limited. Studies on hematite indicate that Raman shift (and thus remote Raman efficiency) depends on laser wavelength.
机译:着陆器和流浪者对太阳能系统勘探很重要,我们正在设计和分析一个行星任务的远程拉曼系统。拉曼光谱是一种用于材料分析的常见和强大的技术。我们开发了一种系统,使拉曼光谱测量能够在50米的距离。为了设计一种飞行仪器,我们需要定量地了解自然表面的拉曼效率。我们将远程拉曼效率定义为辐射突出的比率,将自然表面留给入射激光的辐照度。天然表面的辐射探空探空探空射出是样品辐射(减去背景),斯特拉德斯中的突出的实线角,以及光谱仪的光谱带宽。激光辐照度是激光(MJ /脉冲)的能量的乘积和脉冲速率(Hz),除以激光斑点的区域。我们已经确定了几种矿物质和岩石的远程拉曼效率:白云石大理石,脱毛虫,乳状石英,钙质,方解石,生物烟石花岗岩,菱镁矿,燧石,石膏(Selenite),纤维石膏和砂岩。通过量化远程拉曼效率,我们将能够确定远程拉曼系统可以在可用功率受到限制的行星表面上获取的光谱的数量和质量。关于赤铁矿的研究表明拉曼移位(并因此远程拉曼效率)取决于激光波长。

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