Dirksen Ruud, Dobber Marcel, Voors Robert, Levelt Pieternel
Royal Netherlands Meterological Institute, Bilt, The Netherlands.
Appl Opt. 2006 Jun 10;45(17):3972-81. doi: 10.1364/ao.45.003972.
A method and an experimental measurement setup to accurately characterize the instrument transfer function in the spectral domain for hyperspectral spectrometers in the ultraviolet-visible wavelength range are described. The application to the on-ground calibration of the Ozone Monitoring Instrument (OMI) on board the Earth Observing System Aura satellite is presented and discussed. With this method and setup, based on an echelle grating, a sampling of the instrument transfer function in the spectral domain can be selected and is not limited by the spectral resolution and sampling of the spectrometer that is being characterized. The importance of accurately knowing the OMI instrument transfer functions in the spectral domain for in-flight differential optical absorption spectroscopy retrievals and wavelength calibration is discussed. The analysis of the OMI measurement data is presented and shows that the instrument transfer functions in the spectral domain as a function of wavelength and viewing angle can be determined with high accuracy.
描述了一种用于精确表征紫外-可见波长范围内高光谱光谱仪光谱域中仪器传递函数的方法和实验测量装置。介绍并讨论了该方法在地球观测系统Aura卫星上的臭氧监测仪(OMI)地面校准中的应用。使用这种基于阶梯光栅的方法和装置,可以选择光谱域中仪器传递函数的采样,且不受被表征光谱仪的光谱分辨率和采样的限制。讨论了准确了解光谱域中OMI仪器传递函数对于飞行中差分光学吸收光谱反演和波长校准的重要性。给出了对OMI测量数据的分析,结果表明可以高精度确定光谱域中作为波长和视角函数的仪器传递函数。