Publications

2022, Eleftheratos, K., Kapsomenakis, J., Fountoulakis, I., Zerefos, C. S., Jöckel, P., Dameris, M., ... Liley, B. …& Douvis, K., Ozone, DNA-active UV radiation, and cloud changes for the near-global mean and at high latitudes due to enhanced greenhouse gas concentrations, Atmospheric Chemistry and Physics, 22(19), 12827-12855
Tags: Clouds, Ozone, Spectral UV

2022, Lauster, B., Dörner, S., Enell, C.-F., Frieß, U., Gu, M., Puķīte, J., Raffalski, U., and Wagner, T., Occurrence of polar stratospheric clouds as derived from ground-based zenith DOAS observations using the colour index, Atmospheric Chemistry and Physics, 22, 15925–15942, https://doi.org/10.5194/acp-22-15925-2022
Tags: Clouds, Polar, UVVis

2021, Svendby, T.M., Johnsen, B., Kylling, A., Dahlback, A., Bernhard, G. H., Hansen, G. H., Petkov, B., and Vitale, V, GUV long-term measurements of total ozone column and effective cloud transmittance at three Norwegian site, Atmospheric Chemistry and Physics, 21, 7881–7899, https://doi.org/10.5194/acp-21-7881-2021
Tags: Clouds, Ozone, UVVis

2021, Snels, M., Francesco Colao, Francesco Cairo, Ilir Shuli, Andrea Scoccione, Mauro De Muro, Michael Pitts, Lamont Poole, Luca Di Liberto, Quasi-coincident observations of polar stratospheric clouds by ground-based lidar and CALIOP at Concordia (Dome C) from 2014 to 2018, Atmospheric Chemistry and Physics, 21, 2165-2178
Tags: Lidar, PSC, Satellite

2019, Snels, M., Scoccione, A., Di Liberto, L., Colao, F., Pitts, M., Poole, L., Deshler, T., Cairo, F., Cagnazzo, C., and Fierli, F., Comparison of Antarctic polar stratospheric cloud observations by ground-based and space-borne lidar and relevance for chemistry–climate models, Atmospheric Chemistry and Physics, 19, 955–972, https://doi.org/10.5194/acp-19-955-2019
Tags: Lidar, Model, PSC

2010, David, C., Keckhut, P., Armetta, A., Jumelet, J., Snels, M., Marchand, M. and Bekki, S., Radiosonde stratospheric temperatures at Dumont d'Urville (Antarctica): trends and link with polar stratospheric clouds, Atmospheric Chemistry and Physics, 10, 813-3825
Tags: Lidar, PSC, Trends

2007, Keckhut, P., C. David, M. Marchand, S. Bekki, J. Jumelet, A. Hauchecorne, and M. Höpfner, Observation of Polar Stratospheric Clouds down to the Mediterranean coast, Atmospheric Chemistry and Physics, 7, 5275-5281
Tags: Lidar, PSC

2005, Keckhut, P., A. Hauchecorne, S. Bekki, A. Colette, C. David, J. Jumelet, Evidences of thin cirrus clouds in the stratosphere at mid-latitudes, Atmospheric Chemistry and Physics, 5, 3407-3414
Tags: Clouds, Lidar

2005, Maturilli, M., R. Neuber, P. Massoli, F. Cairo, A. Adriani, M. L. Moriconi, and G. Di Donfrancesco, Differences in Arctic and Antarctic PSC Occurrence as observed by lidar in Ny-Ålesund [79ºN,12ºE] and McMurdo [78ºS,167ºE], Atmospheric Chemistry and Physics, 5, 2081-2090, https://doi.org/10.5194/acp-5-2081-2005
Tags: Lidar, PSC

2004, Reichardt, J., A. Dornbrack, S. Reichardt, P. Yang and T. J. McGee, Mountain wave psc dynamics and microphysics from ground-based lidar measurements and meteorological modeling, Atmospheric Chemistry and Physics, 4, 1149-1165
Tags: Lidar, Model, PSC