Articles | Volume 17, issue 1
https://doi.org/10.5194/amt-17-261-2024
https://doi.org/10.5194/amt-17-261-2024
Research article
 | 
16 Jan 2024
Research article |  | 16 Jan 2024

Cloud optical and physical properties retrieval from EarthCARE multi-spectral imager: the M-COP products

Anja Hünerbein, Sebastian Bley, Hartwig Deneke, Jan Fokke Meirink, Gerd-Jan van Zadelhoff, and Andi Walther

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Cited articles

Baum, B. A., Yang, P., Heymsfield, A. J., Bansemer, A., Cole, B. H., Merrelli, A., Schmitt, C., and Wang, C.: Ice cloud single-scattering property models with the full phase matrix at wavelengths from 0.2 to 100 µm, J. Quant. Spectrosc. Ra., 146, 123–139, 2014. a
Benas, N., Finkensieper, S., Stengel, M., van Zadelhoff, G.-J., Hanschmann, T., Hollmann, R., and Meirink, J. F.: The MSG-SEVIRI-based cloud property data record CLAAS-2, Earth Syst. Sci. Data, 9, 415–434, https://doi.org/10.5194/essd-9-415-2017, 2017. a
Berk, A., Acharya, P. K., Bernstein, L. S., Anderson, G. P., Chetwynd Jr., J. H., and Hoke, M. L.: Reformulation of the MODTRAN band model for higher spectral resolution, in: Algorithms for Multispectral, Hyperspectral, and Ultraspectral Imagery VI, vol. 4049, 190–198, SPIE, 2000. a
CloudSat DPC: News, CloudSat, https://www.cloudsat.cira.colostate.edu (last access: 31 March 2023), 2023. a
de Haan, J. F., Bosma, P., and Hovenier, J.: The adding method for multiple scattering calculations of polarized light, Astronomy and astrophysics, 183, 371–391, 1987. a
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Short summary
The ESA cloud, aerosol and radiation mission EarthCARE will provide active profiling and passive imaging measurements from a single satellite platform. The passive multi-spectral imager (MSI) will add information in the across-track direction. We present the cloud optical and physical properties algorithm, which combines the visible to infrared MSI channels to determine the cloud top pressure, optical thickness, particle size and water path.