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Tilted Two-Dimensional Array Multifocus Confocal Raman Microspectroscopy

机译:倾斜的二维阵列多焦点共聚焦拉曼微型光谱检查

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摘要

A simple and efficient two-dimensional multi focus confocal Raman microspectroscopy featuring the tilted array, technique is demonstrated. Raman scattering from a 4 X 4 square foci array passing through a 4 X 4 confocal pinhole array is tilted with a periscope. The tilted array of Raman scattering signals is dispersed by an imaging spectrograph onto a CCD detector, giving 16 independent Raman spectra formed as 16 bands with different heights on the sensor. Use of a state-of-theart imaging spectrograph enables high-precision wavenumber duplicability of the 16 spectra. This high duplicability makes the simultaneously obtained spectra endurable for multivariate spectral analyses, which is demonstrated by a singular value decomposition analysis for Raman spectra of liquid indene. Although the present implementation attains only 16 measurement points, the number of points can be extended to larger than 100 without any technical leaps. Limit of patallelization depends on the interval of measurement points as Well as the performance of the optical system. Criteria for finding the maximum feasible number are discussed.
机译:一种简单富有效的二维多聚焦共聚焦拉曼微型光谱分光镜,演示了技术。拉曼从一个通过4×4共聚焦针孔阵列的4×4平方焦点阵列的拉曼散射,偏振镜头倾斜。将倾斜的拉曼散射信号阵列通过成像光谱仪分散到CCD检测器上,使16个独立拉曼光谱形成为在传感器上具有不同高度的16条带。使用最终的成像光谱仪使16个光谱的高精度波数可重复性。这种高可重复性使得同时获得的用于多变量光谱分析的光谱,这是通过液体茚的拉曼光谱的奇异值分解分析来证明。尽管目前的实施仅达到16个测量点,但是点数可以延伸到大于100,没有任何技术跳跃。 Patelization的限制取决于测量点的间隔以及光学系统的性能。讨论了找到最大可行性号码的标准。

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