Sharma S K, Misra A K, Lucey P G, Angel S M, McKay C P
Hawaii Institute of Geophysics and Planetology, SOEST, University of Hawaii, 1680 East-West Road, POST 602, Honolulu, Hawaii 96822, USA.
Appl Spectrosc. 2006 Aug;60(8):871-6. doi: 10.1366/000370206778062110.
A portable pulsed remote Raman spectroscopy system has been fabricated and tested to 100 m radial distance. The remote Raman system is based on a directly coupled f/2.2 spectrograph with a small (125 mm diameter) telescope and a frequency-doubled Nd:YAG pulsed laser (20 Hz, 532 nm, 25 mJ/pulse) used as the excitation source in a co-axial geometry. The performance of the Raman system is demonstrated by measuring the gated Raman spectra of calcite, sodium phosphate, acetone, and naphthalene. Raman spectra of these materials were recorded with the 532 nm pulsed laser excitation and accumulating the spectra with 600 laser shots (30 s integration time) at 100 m with good signal-to-background ratio. The remote pulsed Raman system can be used for remotely identifying both inorganic and organic materials during daytime or nighttime. The system will be useful for terrestrial applications such as monitoring environmental pollution and for detecting minerals and organic materials such as polycyclic aromatic hydrocarbons (PAHs) on planetary surfaces such as Mars.
已制造出一种便携式脉冲远程拉曼光谱系统,并在100米的径向距离上进行了测试。该远程拉曼系统基于一个直接耦合的f/2.2光谱仪,配有一个小型(直径125毫米)望远镜,以及一台倍频Nd:YAG脉冲激光器(20赫兹,532纳米,25毫焦/脉冲),在同轴几何结构中用作激发源。通过测量方解石、磷酸钠、丙酮和萘的选通拉曼光谱来展示拉曼系统的性能。这些材料的拉曼光谱是用532纳米脉冲激光激发记录的,并在100米处用600次激光脉冲(30秒积分时间)累积光谱,具有良好的信背比。该远程脉冲拉曼系统可用于在白天或夜间远程识别无机和有机材料。该系统将有助于地面应用,如监测环境污染,以及探测火星等行星表面的矿物质和有机材料,如多环芳烃(PAHs)。