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Comparison of noise sources in dual- and single-beam Fourier-transform near-infrared spectrometry

机译:双光束和单光束傅立叶变换近红外光谱中噪声源的比较

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摘要

We report the results of noise source investigations and stability tests in both dual- and single-beam Fourier-transform near-infrared operation. The noise sources are divided into two parts: intrinsic and extrinsic. The intrinsic noise sources, which include detector system noise, are common for both modes of operation. The extrinsic sources, which include variations in ambient conditions (room temperature, atmospheric gaseous components, and source scintillations), are shown to be smaller in dual-beam operation than in single-beam operation by a factor of 2-10. The results are based on interferograms measured in specified time intervals. The root-mean-square values are calculated at each retardation point. The values obtained near the centerburst and average values obtained for the dual-beam operation are compared with the intrinsic noise value obtained for single-beam operation. The dual-beam advan-tage is observed in both open-beam and liquid cell measurements, and it corresponds well with earlier results based on multivariate calibration techniques applied on aqueous solutions.
机译:我们报告了在双光束和单光束傅立叶变换近红外操作中的噪声源调查和稳定性测试的结果。噪声源分为两部分:固有噪声和非固有噪声。两种操作模式都具有固有的噪声源,其中包括检测器系统噪声。包括环境条件(室温,大气气体成分和源闪烁)变化在内的外部源,在双光束运行中比在单光束运行中小2-10倍。结果基于在指定时间间隔内测得的干涉图。在每个延迟点计算均方根值。将中心爆裂附近获得的值和双光束操作获得的平均值与单光束操作获得的固有噪声值进行比较。双光束的优势在开放光束和液体小室测量中都可以观察到,并且与基于应用于水溶液的多元校准技术的早期结果非常吻合。

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