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首页> 外文期刊>Applied optics >INTERPOLATION ERRORS IN UV-VISIBLE SPECTROSCOPY FOR STRATOSPHERIC SENSING - IMPLICATIONS FOR SENSITIVITY, SPECTRAL RESOLUTION, AND SPECTRAL RANGE
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INTERPOLATION ERRORS IN UV-VISIBLE SPECTROSCOPY FOR STRATOSPHERIC SENSING - IMPLICATIONS FOR SENSITIVITY, SPECTRAL RESOLUTION, AND SPECTRAL RANGE

机译:紫外可见光谱内插误差对平流层传感的影响-对灵敏度,光谱分辨率和光谱范围的影响

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摘要

UV-visible measurements of stratospheric constituents require the ratio of a pair of spectra to be determined. If their wavelength calibrations differ and if an array detector is used, at least one spectrum must be interpolated. This introduces error if the spectrum is undersampled; the error is smaller if wavelength stability is good. Increasing the sampling ratio by making the spectral resolution poorer reduces the optical depths of absorption by constituents. Exact values of interpolation errors from real spectra are a difficult topic, but with a theoretical study with a simulated spectrum we show that the sampling ratio should exceed similar to 4.5 pixels/FWHM but need not exceed 6.5 pixels/FWHM. To avoid significant reduction in the optical depth of NO2, the resolution should be smaller than similar to 1.0 nm FWHM. Hence a spectrometer system that measures both OClO and NO3 by observing one order from one stationary grating should have more than similar to 1500 pixels, more than many currently available array detectors. (C) 1996 Optical Society of America [References: 11]
机译:平流层成分的紫外可见测量需要确定一对光谱的比率。如果它们的波长校准不同,并且使用了阵列检测器,则必须插入至少一个光谱。如果频谱采样不足,则会引入错误;如果波长稳定性好,则误差较小。通过使光谱分辨率变差来增加采样率,会减少成分吸收的光学深度。实际光谱中插值误差的确切值是一个困难的话题,但是通过对模拟光谱的理论研究,我们发现采样率应超过类似于4.5像素/ FWHM的水平,但不必超过6.5像素/ FWHM。为避免NO2的光学深度显着降低,分辨率应小于与1.0 nm FWHM相似的分辨率。因此,通过从一个固定光栅观察一个阶来测量OClO和NO3的光谱仪系统应该比1500个像素具有更多的相似性,比许多当前可用的阵列检测器还多。 (C)1996年美国眼镜学会[参考文献:11]

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