Abedin M Nurul, Bradley Arthur T, Misra Anupam K, Bai Yingxin, Hines Glenn D, Sharma Shiv K
Appl Opt. 2018 Jan 1;57(1):62-68. doi: 10.1364/AO.57.000062.
We report the development of an innovative standoff ultracompact micro-Raman instrument that would solve some of the limitations of traditional micro-Raman systems to provide a superior instrument for future NASA missions. This active remote sensor system, based on a 532 nm laser and a miniature spectrometer, is capable of inspection and identification of minerals, organics, and biogenic materials within several centimeters (2-20 cm) at a high 10 μm resolution. The sensor system is based on inelastic (Raman) light scattering and laser-induced fluorescence. We report on micro-Raman spectroscopy development and demonstration of the standoff Raman measurements by acquiring Raman spectra in daylight at a 10 cm target distance with a small line-shaped laser spot size of 17.3 μm (width) by 5 mm (height).
我们报告了一种创新的远距离超紧凑型显微拉曼仪器的研发情况,该仪器将解决传统显微拉曼系统的一些局限性,为美国国家航空航天局(NASA)未来的任务提供一种更优质的仪器。这种有源遥感器系统基于532纳米激光器和微型光谱仪,能够在数厘米(2至20厘米)范围内以10微米的高分辨率检测和识别矿物、有机物和生物源材料。该传感器系统基于非弹性(拉曼)光散射和激光诱导荧光。我们通过在日光下、目标距离为10厘米、激光光斑呈小线形(宽度为17.3微米、高度为5毫米)的条件下采集拉曼光谱,报告了显微拉曼光谱学的发展以及远距离拉曼测量的演示情况。