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Modified Indirect Hard Modeling for Non-invasive Raman Measurements Containing Surface Interference

机译:包含表面干扰的非侵入式拉曼测量的改进间接硬建模

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Non-invasive Raman spectroscopy has been used in an increasing number of applications in recent years. However, in situations where surface signal is excessive, the acquired spectrum of probed sample suffers from surface interference in either conventional backscattering Raman or specially designed Raman methods. A computational method for Raman spectral recovery is required. Strong overlapping of Raman bands and intense fluorescence are the main obstacles that hinder the spectral recovery. In this paper, we present a modified version of an indirect hard modeling algorithm to extract the true Raman spectrum of the probed sample in a two-layer system. The proposed algorithm requires two spectra. By an iterative stepwise optimization, it models one spectrum as a combination of a scaling of the other spectrum, a polynomial baseline and the Raman peaks of the probed sample. It addresses the issue of Raman bands overlapping as well as intense fluorescence interference. The performance of the algorithm is evaluated on experimental Raman spectra. Comparative studies show that the proposed algorithm provides better results for Raman spectral recovery.
机译:近年来,无创拉曼光谱已被用于越来越多的应用中。但是,在表面信号过多的情况下,采用常规的反向散射拉曼或专门设计的拉曼方法,所采集样品的光谱会受到表面干扰。需要一种用于拉曼光谱恢复的计算方法。拉曼谱带的强重叠和强烈的荧光是阻碍光谱恢复的主要障碍。在本文中,我们提出了一种间接硬建模算法的改进版本,以在两层系统中提取所探测样品的真实拉曼光谱。所提出的算法需要两个光谱。通过迭代的逐步优化,它可以将一个光谱建模为另一光谱的缩放比例,多项式基线和所探测样品的拉曼峰的组合。它解决了拉曼谱带重叠以及强烈的荧光干扰的问题。在实验拉曼光谱上评估算法的性能。比较研究表明,该算法为拉曼光谱恢复提供了更好的结果。

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