Published July 31, 2014 | Version v1
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Validation of H₂O Continuum Absorption Models in the Wave Number Range 180-600 cm⁻¹ with Atmospheric Emitted Spectral Radiance Measured at the Antarctica Dome-C Site

  • 1. School of Engineering, Universit`a degli Studi della Basilicata, Via dell’Ateneo Lucano 10, 85100 Potenza (Italy)
  • 2. Istituto Nazionale di Ottica - CNR, largo E. Fermi 6, 50125 Firenze, (Italy)

Description

We present the results concerning the analysis of a set of atmospheric emitted (down welling) spectral radiance observations in the spectral range 180 to 1100 cm−1 acquired at the Dome-C site in Antarctica during an extensive field campaign in 2011-2012. The work has been mainly focused on retrieving and validating the coefficients of the foreign contribution to the water vapour continuum absorption, within a spectral range overlapping the water vapour rotational band. Retrievals have been performed by using a simultaneous physical retrieval procedure for atmospheric and spectroscopic parameters. Both day (summer) and night (winter) spectra have been used in our analysis. This new set of observations in the far infrared range has allowed us to extend validation and verification of state-of-the-art water vapour continuum absorption models down to 180 cm−1. The results show that discrepancies between measurements and models are less than 10% in the interval 350-590 cm−1, while they are slightly larger at wave numbers below 350 cm−1. Overall, our study shows a good consistency between observations and state-of-the-art models and gives evidence for the need of also adjusting line absorption as done in Delamere et al. (2010). Finally, it has been found that there is a good agreement between the coefficients retrieved using either summer or winter spectra, which are acquired in far different meteorological conditions.

Notes

Session I: Remote Sensing and Radiative Transfer. June 23, 2014.

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