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Comparison of Phase Rotation, Phase Spectrum, and Two-Dimensional Correlation Methods in Step-Scan Fourier Transform Infrared Photoacoustic Spectral Depth Profiling

机译:步进扫描傅里叶变换红外光声光谱深度剖析中的相位旋转,相位谱和二维相关方法的比较

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摘要

This paper compares three photoacoustic phase-related analytical approaches for spectral depth profiling of heterogeneous materials, particularly in conjunction with step, scan Fourier transform infrared spectroscopy. The three approaches compared are (1) the phase rotation method, (2) the direct analysis of the phase spectrum, and (3) the calculation of two-dimensional (2D) frequency correlation maps. The experimental data for a representative two-layer sample consisting of a 12-μm-thick layer 0/ethylene-vinyl acetate on a 60-μm-thick polypropylene substrate are compared for the three approaches. Similar/ identical phase difference information can be obtained from either the continuous phase rotation plot or the phase spectrum. However, the phase spectrum method provides more accurate, direct, and efficient results with a higher depth resolution than does the phase rotation method. Qualitative agreement between the 2D correlation analysis and the photoacoustic phase analysis is observed, although the 2D approach does not clearly distinguish between spectral bands with similar response phase, limiting it to qualitative use.
机译:本文比较了三种与光声相相关的分析方法,用于分析异质材料的光谱深度,特别是与步进扫描傅立叶变换红外光谱结合使用。比较的三种方法是(1)相位旋转方法;(2)直接分析相位频谱;(3)计算二维(2D)频率相关图。对于这三种方法,比较了由具有代表性的两层样品的实验数据,该样品由厚度为12μm的层0 /乙烯-乙酸乙烯酯构成,厚度为60μm的聚丙烯基材。可以从连续相位旋转图或相位谱中获得相似/相同的相位差信息。但是,与相位旋转方法相比,相位谱方法可提供更准确,直接和有效的结果,并具有更高的深度分辨率。尽管2D方法不能清楚地区分具有相似响应相位的光谱带,但仍将其用于定性使用,因此可以观察到2D相关分析和光声相位分析之间的定性一致性。

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