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Modified spatial heterodyne Raman spectrometer for remote-sensing analysis of organics

机译:用于有机物遥感分析的改进的空间外差拉曼光谱仪

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A spatial heterodyne Raman spectrometer (SHRS) is a variant of a Michelson interferometer where the mirrors in a Michelson are replaced with stationary diffraction gratings. Instead of generating an interferogram in the time domain, as in the case of a Michelson interferometer, the SHRS interferogram is generated in the spatial domain as a superposition of two-dimensional cosinusoidal spatial fringes. The spatial interferogram is recorded by an intensified charge-coupled device (ICCD) camera, and the Raman spectrum is recovered by taking the Fourier transform of the spatial interferogram. In the modified SHRS utilized in the present work, a λ/10 mirror has replaced one of the diffraction gratings. This alteration has a few effects. First, the ICCD records a greater number of photons because photons are not lost into unused diffraction orders. Second, the spectral bandpass of the modified SHRS has been doubled allowing the measurement of Raman spectra from 100-4000 cm~(-1). In this work, the authors present Raman spectra of organic compounds taken at remote distances of 19 meters with this modified SHRS.
机译:空间外差拉曼光谱仪(SHR)是迈克森干涉仪的变体,其中迈克尔森中的镜子被固定衍射光栅替换。而不是在时域中产生干扰图,如在迈克森干涉仪的情况下,在空间域中产生SHRS干涉图作为二维烯化空间空间条纹的叠加。空间干涉图通过强化电荷耦合器件(ICCD)相机记录,并且通过采用空间干涉图的傅立叶变换来恢复拉曼频谱。在本作工作中使用的改进的SHR中,λ/ 10镜子已经更换了衍射光栅之一。这种改变有一些效果。首先,ICCD记录更多的光子,因为光子不会丢失到未使用的衍射令中。其次,改进的SHR的光谱带通量已经加倍,允许测量拉曼光谱从100-4000cm〜(-1)。在这项工作中,作者用这种改进的SHRS在远程距离下拍摄的有机化合物的拉曼光谱。

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