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一种用于通过532纳米激光激发来表征矿物的拉曼光谱和激光诱导击穿光谱联用远程仪器。

A combined remote Raman and LIBS instrument for characterizing minerals with 532 nm laser excitation.

作者信息

Sharma Shiv K, Misra Anupam K, Lucey Paul G, Lentz Rachel C F

机构信息

Hawaii Institute of Geophysics and Planetology, SOEST, University of Hawaii, 2525 Correa Road, Honolulu, HI 96822, USA.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2009 Aug;73(3):468-76. doi: 10.1016/j.saa.2008.08.005. Epub 2008 Nov 5.

Abstract

The authors have developed an integrated remote Raman and laser-induced breakdown spectroscopy (LIBS) system for measuring both the Raman and LIBS spectra of minerals with a single 532 nm laser line of 35 mJ/pulse and 20 Hz. The instrument has been used for analyzing both Raman and LIBS spectra of carbonates, sulfates, hydrous and anhydrous silicates, and iron oxide minerals in air. These experiments demonstrate that by focusing a frequency-doubled 532 nm Nd:YAG pulsed laser beam with a 10x beam expander to a 529-microm diameter spot on a mineral surface located at 9 m, it is possible to measure simultaneously both the remote Raman and LIBS spectra of calcite, gypsum and olivine by adjusting the laser power electronically. The spectra of calcite, gypsum, and olivine contain fingerprint Raman lines; however, it was not possible to measure the remote Raman spectra of magnetite and hematite at 9 m because of strong absorption of 532 nm laser radiation and low intensities of Raman lines from these minerals. The remote LIBS spectra of both magnetite and hematite contain common iron emission lines but show difference in the minor amount of Li present in these two minerals. Remote Raman and LIBS spectra of a number of carbonates, sulfates, feldspars and phyllosilicates at a distance of 9 m were measured with a 532-nm laser operating at 35 mJ/pulse and by changing photon flux density at the sample by varying the spot diameter from 10 mm for Raman to 530 microm for LIBS measurements. The complementary nature of these spectra is highlighted and discussed. The combined Raman and LIBS system can also be re-configured to perform micro-Raman and micro-LIBS analyses, which have applications in trace/residue analysis and analysis of very small samples in the nano-gram range.

摘要

作者开发了一种集成的远程拉曼光谱和激光诱导击穿光谱(LIBS)系统,用于使用波长为532 nm、脉冲能量为35 mJ、频率为20 Hz的单束激光测量矿物的拉曼光谱和LIBS光谱。该仪器已用于分析空气中碳酸盐、硫酸盐、含水和无水硅酸盐以及氧化铁矿物的拉曼光谱和LIBS光谱。这些实验表明,通过使用10倍扩束器将倍频532 nm Nd:YAG脉冲激光束聚焦到位于9 m处的矿物表面上直径为529微米的光斑上,可以通过电子方式调节激光功率同时测量方解石、石膏和橄榄石的远程拉曼光谱和LIBS光谱。方解石、石膏和橄榄石的光谱包含指纹拉曼谱线;然而,由于532 nm激光辐射的强烈吸收以及这些矿物的拉曼谱线强度较低,无法在9 m处测量磁铁矿和赤铁矿的远程拉曼光谱。磁铁矿和赤铁矿的远程LIBS光谱都包含常见的铁发射谱线,但这两种矿物中存在的少量锂表现出差异。使用波长为532 nm、脉冲能量为35 mJ的激光,并通过将光斑直径从拉曼测量的10 mm变化到LIBS测量的530微米来改变样品处的光子通量密度,测量了9 m距离处多种碳酸盐、硫酸盐、长石和层状硅酸盐的远程拉曼光谱和LIBS光谱。突出并讨论了这些光谱的互补性质。组合的拉曼光谱和LIBS系统还可以重新配置以执行显微拉曼光谱和显微LIBS分析,这些分析在痕量/残留分析以及纳克范围内非常小的样品分析中具有应用。

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