High resolution infrared spectra of the earth's atmosphere. I - Numerical simulation of atmospheric spectra

Physics – Optics

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Atmospheric Radiation, Digital Simulation, Earth Atmosphere, High Resolution, Infrared Spectra, Molecular Absorption, Atmospheric Attenuation, Atmospheric Optics, Spectral Resolution, Vertical Distribution, Water Vapor

Scientific paper

A method of numerical simulation of transmission and/or emission spectra of earth's lower atmosphere is described. The computation is performed, line by line, in the wavelength range from 10 microns to 1 mm. Six molecular atmospheric absorbers have been considered. The numerical treatment is analyzed, and some spectral results are presented. The synthetic data are convolved with an appropriate instrumental function, and the line-identification problem is discussed to allow comparison with high-resolution spectral observations. In addition, a method for inverting the emission data is presented and applied to determine the vertical distribution of telluric water vapor and atmospheric spectral transmission.

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