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Raman spectroscopic detection for liquid and solid targets using a spatial heterodyne spectrometer

机译:使用空间外差光谱仪对液体和固体目标进行拉曼光谱检测

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摘要

Spatial heterodyne Raman spectroscopy (SHRS) is a new type of effective method for the analysis of structure and composition of liquid and solid targets with the characteristics of no moving parts, high spectral resolution, high optical throughput and large field of view. The technique is very suitable for detecting the targets from long distances or under the conditions with ambient light, which is essential for the exploration of planetary surface. In order to have a better understanding of the ability of SHRS for the detection of liquid and solid targets, a breadboard was designed, built and calibrated. Signal to noise was estimated at different integration time or laser power for carbon tetrachloride. Pure materials or materials contained in bottles were both tested. The mixture of organic liquids or inorganic solids were tested. In order to test the detection ability for natural targets, some composition-unknown rocks and pebbles were tested. The results have shown that SHRS can meet the requirements for the detection of weak Raman signal scattered from artificial or natural targets. Standoff detection of sulfur from 5-m or 10-m distance without using any telescope or collimation optics was also tried to test the high optical throughput of SHRS. The potential feasibility of standoff detection has been proved. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:空间外差拉曼光谱法(SHRS)是一种新型的有效方法,用于分析液体和固体目标的结构和组成,具有无移动部件,高光谱分辨率,高光通量和大视野的特点。该技术非常适合从远距离或在环境光条件下检测目标,这对于探索行星表面至关重要。为了更好地了解SHRS检测液体和固体目标的能力,设计,制造和校准了一块面包板。在四氯化碳的不同积分时间或激光功率下估计了信噪比。均测试了纯净材料或装在瓶子中的材料。测试了有机液体或无机固体的混合物。为了测试天然目标的检测能力,测试了一些未知成分的岩石和卵石。结果表明,SHRS可以满足检测从人造或自然目标散射的弱拉曼信号的要求。还尝试了在不使用任何望远镜或准直光学器件的情况下从5 m或10 m距离对硫进行隔离检测,以测试SHRS的高光通量。已经证明了对峙检测的潜在可行性。版权所有(c)2015 John Wiley&Sons,Ltd.

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