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行星表面矿物的远距离拉曼光谱探测。

Stand-off Raman spectroscopic detection of minerals on planetary surfaces.

作者信息

Sharma Shiv K, Lucey Paul G, Ghosh Manash, Hubble Hugh W, Horton Keith A

机构信息

Hawaii Institute of Geophysics and Planetology, University of Hawaii, 2525 Correa Rd., HIG, Honolulu, HI 96822, USA.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2003 Aug;59(10):2391-407. doi: 10.1016/s1386-1425(03)00080-5.

Abstract

We have designed and developed two breadboard versions of stand-off Raman spectroscopic systems for landers based on a 5-in. Maksutov-Cassegrain telescope and a small (4-in. diameter) Newtonian telescope receiver. These systems are capable of measuring the Raman spectra of minerals located at a distance of 4.5-66 m from the telescope. Both continuous wave (CW) Ar-ion and frequency doubled Nd:YAG (532 nm) pulsed (20 Hz) lasers are used as excitation sources for measuring remote Raman spectra of rocks and minerals. We have also made complementary measurements on the same rock samples with a micro-Raman system in 180 and 135 degrees geometry for evaluating the system performance and for estimating effect of grain size and laser-induced heating on the spectra of minerals using alpha-quartz as a model mineral. A field portable remote pulsed Raman spectroscopic system based on the 5-in. telescope and an f/2.2 spectrograph has been developed and tested. We have also demonstrated a prototype of a combined Raman and laser-induced breakdown spectroscopy (LIBS) system, capable of providing major element composition and mineralogical information on both biogenic and inorganic minerals at a distance of 10 m from the receiver.

摘要

我们基于一台5英寸马克苏托夫-卡塞格伦望远镜和一个小型(直径4英寸)牛顿望远镜接收器,设计并开发了两种用于着陆器的分离式拉曼光谱系统实验板版本。这些系统能够测量距离望远镜4.5至66米处矿物的拉曼光谱。连续波(CW)氩离子激光器和倍频Nd:YAG(532纳米)脉冲(20赫兹)激光器均被用作激发源,以测量岩石和矿物的远程拉曼光谱。我们还使用微拉曼系统在180度和135度几何构型下对相同岩石样品进行了补充测量,以评估系统性能,并以α-石英作为模型矿物,估算晶粒尺寸和激光诱导加热对矿物光谱的影响。一种基于5英寸望远镜和f/2.2光谱仪的现场便携式远程脉冲拉曼光谱系统已被开发并测试。我们还展示了一种拉曼与激光诱导击穿光谱(LIBS)组合系统的原型,该系统能够在距离接收器10米处提供生物成因和无机矿物的主要元素组成及矿物学信息。

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