Analysis of nonlocal thermodynamic equilibrium CO 4.7 μm fundamental, isotopic, and hot band emissions measured by the Michelson Interferometer for Passive Atmospheric Sounding on Envisat

DOI: 
10.1029/2006JD007933
Publication date: 
09/06/2007
Main author: 
Funke B.
IAA authors: 
Funke B.;López-Puertas M.;Bermejo-Pantaleón D.
Authors: 
Funke B., López-Puertas M., Bermejo-Pantaleón D., von Clarmann T., Stiller G.P., Höpfner M., Grabowski U., Kaufmann M.
Journal: 
Journal of Geophysical Research Atmospheres
Publication type: 
Article
Volume: 
112
Pages: 
Number: 
D11305
Abstract: 
Nonlocal thermodynamic equilibrium (non-LTE) simulations of the 12C16O(1 → 0) fundamental band, the 12C16O(2 → 1) hot band, and the isotopic 13C16O(1 → 0) band performed with the Generic Radiative Transfer and non-LTE population Algorithm (GRANADA) and the Karlsruhe Optimized and Precise Radiative Transfer Algorithm (KOPRA) have been compared to spectrally resolved 4.7 μm radiances measured by the Michelson Interferometer for Passive Atmospheric Sounding (MIPAS). The performance of the non-LTE simulation has been assessed in terms of band radiance ratios in order to avoid a compensation of possible non-LTE model errors by retrieval errors in the CO abundances inferred from MIPAS data with the same non-LTE algorithms. The agreement with the measurements is within 5% for the fundamental band and within 10% for the hot band. Simulated 13C16O radiances agree with the measurements within the instrumental noise error. Solar reflectance at the surface or clouds has been identified as an important additional excitation mechanism for the CO(2) state. The study represents a thorough validation of the non-LTE scheme used in the retrieval of CO abundances from MIPAS data. Copyright 2007 by the American Geophysical Union.
Database: 
WOK
SCOPUS
ADS
URL: 
https://ui.adsabs.harvard.edu/#abs/2007JGRD..11211305F/abstract
ADS Bibcode: 
2007JGRD..11211305F
Keywords: