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A line-scan hyperspectral Raman system for spatially offset Raman spectroscopy

机译:用于空间偏移拉曼光谱的线扫描高光谱拉曼系统

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Spatially offset Raman spectroscopy (SORS) is a technique that can obtain subsurface layered information by collecting Raman spectra from a series of surface positions laterally offset from the excitation laser. Currently optical fiber probes are used as major tools in SORS measurement, which are either slow (single fiber probe with mechanical movement) or restricted in selecting offset range and interval (fiber probe array). This study proposes a new method to conduct SORS measurement based on a newly developed line-scan hyperspectral Raman imaging system. A 785-nm point laser was used as an excitation source. A detection module consisting of an imaging spectrograph and a charge-coupled device camera was used to acquire line-shape SORS data in a spectral region of -592 to 3015cm(-1). Using a single scan, the system allowed simultaneous collection of a series of Raman spectra in a broad offset range (e.g. 0-36mm in two sides of the incident laser) with a narrow interval (e.g. 0.07mm). Four layered samples were created by placing butter slices with thicknesses of 1, 4, 7, and 10mm on top of melamine powder, providing different individual Raman characteristics to test the line-scan SORS technique. Self-modeling mixture analysis (SMA) was used to analyze the SORS data. Raman spectra from butter and melamine were successfully retrieved for all four butter-on-melamine samples using the SMA method. The line-scan SORS measurement technique provides a flexible and efficient method for subsurface evaluation, which has potential to be used for food safety and quality inspection. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:空间偏移拉曼光谱(SORS)是一种技术,可以通过从一系列横向偏离激发激光器的表面位置收集拉曼光谱来获得地下分层信息。当前,光纤探头被用作SORS测量中的主要工具,它们要么很慢(具有机械运动的单光纤探头),要么在选择偏移范围和间隔(光纤探头阵列)时受到限制。本研究提出了一种基于新开发的线扫描高光谱拉曼成像系统进行SORS测量的新方法。 785 nm点激光器用作激发源。使用由成像光谱仪和电荷耦合器件照相机组成的检测模块来获取-592至3015cm(-1)光谱范围内的线形SORS数据。使用单次扫描,系统允许以较窄的间隔(例如0.07mm)同时收集宽范围(例如入射激光两侧的0-36mm)的一系列拉曼光谱。通过在三聚氰胺粉末的顶部放置厚度分别为1、4、7和10mm的黄油切片来创建四层样品,以提供不同的单独拉曼特性来测试线扫描SORS技术。使用自建模混合物分析(SMA)分析SORS数据。使用SMA方法成功获取了所有四个三聚氰胺黄油样品的黄油和三聚氰胺的拉曼光谱。线扫描SORS测量技术为地下评估提供了一种灵活而有效的方法,具有用于食品安全和质量检查的潜力。版权所有(c)2015 John Wiley&Sons,Ltd.

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