The libRadtran software package for radiative transfer calculations (Version 2.0)
Author:
Emde C., Buras-Schnell R., Kylling A., Mayer B., Gasteiger J.ORCID, Hamann U.ORCID, Kylling J., Richter B., Pause C., Dowling T., Bugliaro L.ORCID
Abstract
Abstract. libRadtran is a widely used software package for radiative transfer calculations. It allows to compute (polarized) radiances, irradiances, and actinic fluxes in the solar and thermal spectral regions. libRadtran has been used for various applications, including remote sensing of clouds, aerosols and trace gases in the Earth's atmosphere, climate studies, e.g., for the calculation of radiative forcing due to different atmospheric components, for UV-forcasting, the calculation of photolysis frequencies, and for remote sensing of other planets in our solar system. The package has been described in Mayer and Kylling (2005).. Since then several new features have been included, for example polarization, Raman scattering, a new molecular gas absorption parameterization, and several new cloud and aerosol scattering parameterizations. Furthermore a graphical user interface is now available which greatly simplifies the usage of the model, especially for new users. This paper gives an overview of libRadtran version 2.0 with focus on new features. A complete description of libRadtran and all its input options is given in the user manual included in the libRadtran software package, which is freely available at http://www.libradtran.org.
Funder
European Space Agency
Publisher
Copernicus GmbH
Reference142 articles.
1. Ackerman, M.: Ultraviolet Solar Radiation Related to Mesospheric Processes, in: Mesospheric Models and Related Experiments, Astrophysics and Space Science Library, edited by: Fiocco, G., Springer, the Netherlands, 25, 149–159, https://doi.org/10.1007/978-94-010-3114-1_11, 1971. 2. Alexandrov, M. D., Cairns, B., Emde, C., Ackerman, A. S., and van Diedenhoven, B.: Accuracy assessments of cloud droplet size retrievals from polarized reflectance measurements by the research scanning polarimeter, Remote Sens. Environ., 125, 92–111, https://doi.org/10.1016/j.rse.2012.07.012, 2012. 3. Anderson, G., Clough, S., Kneizys, F., Chetwynd, J., and Shettle, E.: AFGL atmospheric constituent profiles (0–120 km), Tech. Rep. AFGL-TR-86-0110, Air Force Geophys. Lab., Hanscom Air Force Base, Bedford, Mass., 1986. 4. Baldauf, M., Seifert, A., Förstner, J., Majewski, D., Raschendorfer, M., and Reinhardt, T.: Operational convective-scale numerical weather prediction with the COSMO model: description and sensitivities, Mon. Weather Rev., 139, 3887–3905, 2011. 5. Bass, A. M. and Paur, R. J.: The ultraviolet cross–section of ozone, I, The measurements, in: Atmospheric Ozone: Proceedings of the Quadrennial Ozone Symposium, Halkidiki, Greece, edited by: Zerefos, C. S. and Ghazi, A., D. Reidel, Norwell, Mass., 601–606, 1985.
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