Publications

2022, Di Paolantonio, M., Dionisi, D., and Liberti, G. L., A semi-automated procedure for the emitter–receiver geometry characterization of motor-controlled lidars, Atmospheric Measurement Techniques, 15, 1217–1231, https://doi.org/10.5194/amt-15-1217-2022
Tags: Lidar

2022, Tencé, F. , Jumelet, J., Bekki, S., Khaykin, S., Sarkissian, A., & Keckhut, P., Australian Black Summer Smoke Observed by Lidar at the French Antarctic Station Dumont d’Urville, Journal of Geophysical Research: Atmospheres, 127, e2021JD035349, https://doi. org/10.1029/2021JD035349
Tags: Aerosol, Fire, Lidar, Sonde

2022, Khaykin, S.A., A. Podglajen, F. Ploeger, J. Grooß, F. Tence, S. Bekki, K. Khlopenkov, K. Bedka, L. Rieger, A. Baron, S. Beekmann, B. Legras, P. Sellitto, T. Sakai, J. Barnes, O. Uchino, I. Morino, T. Nagai, R. Wing, G. Baumgarten, M. Gerding, V. Duflot, G. Payen, J. Jumelet, R. Querel, B., A. Bourassa, B. Clouser, A. Feofilov, A. Hauchecorne, and F. Ravetta , Global perturbation of stratospheric water and aerosol burden by Hunga eruption, Communications Earth Environment, 3, 316, https://doi.org/10.1038/s43247-022-00652-x
Tags: Aerosol, H2O, Lidar, Volcano

2022, Mariaccia, A., Keckhut P., Hauchecorne A., Claud C., Le Pichon A., Meftah M., Khaykin S., Assessment of ERA-5 Temperature Variability in the MiddleAtmosphere Using Rayleigh LiDAR Measurements between 2005 and 2020, Atmosphere, 13 (2), 242, http://doi.org/10.3390/atmos13020242
Tags: Lidar, Model, Temperature

2022, Sullivan, J., Apituley, A., Mettig, N., Kreher, K., Knowland, K.E., Allaart, M., Piters, A., Van Roozendael, M.,Veefkind, P.. Ziemke, J.R. Kramarova, N., Weber, M., Rozanov, A., Twigg, L., Sumnicht, G., McGee, T.J., Tropospheric and Stratospheric Ozone Profiles during the 2019 TROpomi vaLIdation eXperiment (TROLIX-19), Atmospheric Chemistry and Physics, 22, 11137–11153, https://doi.org/10.5194/acp-22-11137-2022
Tags: Lidar, Satellite, Sonde, UVVis

1992, Adriani, A., T. Deshler, G.P. Gobbi, B.J. Johnson, G. Di Donfrancesco, Polar stratospheric clouds over McMurdo, Antarctica, during the 1991 spring: Lidar and particle counter measurements, Geophysical Research Letters, 19, 1755-1758
Tags: Aerosol, Lidar, PSC

1992, Brogniez, C., R. Santer, B.S. Diallo, M. Herman, J. Lenoble, and H. Jaeger, Comparative observations of stratospheric aerosols by ground-based lidar, balloon-borne polarimeter, and satellite solar occultation, Journal of Geophysical Research, 97, 20, 805-20,823
Tags: Aerosol, Lidar, Satellite, Sonde, Validation

1992, Deshler, T., A. Adriani, G.P. Gobbi, D. J. Hofmann, G. Di Donfrancesco, B. J. Johnson, Volcanic aerosol and ozone depletion within the Antarctic polar vortex during the austral spring of 1991, Geophysical Research Letters, 19, 1819-1822
Tags: Aerosol, Lidar, Ozone

1992, di Sarra, A., M. Cacciani, P. Di Girolamo, G. Fiocco, D. Fua`, B. Knudsen, N. Larsen, and T.S. Joergensen, Observations of correlated behavior of stratospheric ozone and aerosol at Thule during winter 1991- 1992, Geophysical Research Letters, 19, 1823-26
Tags: Aerosol, Lidar, Ozone

1992, Hauchecorne, A., M.L. Chanin, P. Keckhut, and D. Nedeljkovic, Lidar monitoring of the temperature in the middle and lower atmosphere, Applied Physics, B 54, 2573-2579
Tags: Lidar, Temperature