Publications

2022, Flamant, C., P. Chazette, O. Caumont, P. Di Girolamo, A. Behrendt, M. Sicard, J. Totems, D. Lange, N. Fourrié, P. Brousseau, C. Augros, A. Baron, M. Cacciani, A. Comerón, B. De Rosa, V. Ducrocq, P. Genau, L. Labatut, C. Muñoz-Porcar, A. Rodríguez-Gómez, D. Summa, R. Thundathil, and V. Wulfmeyer , A network of water vapor Raman lidars for improving heavy precipitation forecasting in southern France: introducing the WaLiNeAs initiative, Bulletin of Atmospheric Science and Technology, 2, 10 , https://doi.org/10.1007/s42865-021-00037-6
Tags: H2O, Lidar

2021, Tritscher, I., Michael C. Pitts, Lamont R. Poole, Simon P. Alexander, Francesco Cairo, Martyn P. Chipperfield, Jens-Uwe Gross, Michael Hoepfner, Alyn Lambert, Beiping Luo, Sergey Molleker, Andrew Orr, Ross Salawitch, Marcel Snels, Reinhold Spang, Wolfgang Woiwode, Thomas Peter, Polar Stratospheric Clouds: Satellite Observations, Processes, and Role in Ozone Depletion, Reviews of Geophysics, 59, https://doi.org/10.1029/2020RG000702
Tags: Lidar, PSC, Ozone

2020, Di Girolamo, P., Assessment of the potential role of atmospheric particulate pollution and airborne transmission in intensifying the first wave pandemic impact of SARS-CoV-2/COVID-19 in Northern Italy, Bulletin of Atmospheric Science and Technology, 1, 515–550, https://doi.org/10.1007/s42865-020-00024-3
Tags: Lidar, Aerosol, Health

2020, Di Girolamo, P., B. De Rosa, C. Flamant, D. Summa, O. Bousquet, P. Chazette, J. Totems, M. Cacciani, Water vapour mixing ratio and temperature inter-comparison results in framework of the Hydrological Cycle in the Mediterranean Experiment—Special Observation Period 1, Bulletin of Atmospheric Science and Technology, 1, 113–153, https://doi.org/10.1007/s42865-020-00008-3
Tags: H2O, Lidar, Temperature

2018, Pommereau, J.P., F. Goutail, A. Pazmino, F. Lefèvre, M.P. Chipperfield, W. Feng, M. von Roozendael, N. Jipsen, G. Hansen, R. Kivi, K. Bognar, K. Strong, K. Walker, A. Kuzmichev, S. Khattatov, and V. Sitnikova, Recent Arctic ozone depletion: Is there an impact of climate change?, Comptes Rendus Geosciences, 350, 347-353, https://doi.org/10.1016/j.crte.2018.07.009
Tags: Ozone, Trends, UVVis

2018, Staehelin, J., Petropavlovskikh, I., De Mazière, M., and Godin-Beekmann, S., The role and performance of ground-based networks in tracking the evolution of the ozone layer, Comptes Rendus Geosciences, 350(7), 354-367, https://doi.org/10.1016/j.crte.2018.08.007
Tags: FTIR, Ozone

2016, Kremser, S., et al., Stratospheric aerosol-observations processes, and impact on climate, Reviews of Geophysics, 54, https://doi.org/10.1002/2015RG000511
Tags: Aerosol, Lidar

2010, Hauchecorne, A., P. Keckhut, C. Claud, F. Dalaudier, A. Garnier, Observation of the thermal structure and dynamics of the stratosphere and the mesosphere from space, Comptes Rendus Geosciences, 342 (4-5), 323-330, https://doi.org/10.1016/j.crte.2010.01.002
Tags: Lidar, Satellite, Temperature

2008, Beig, G., J. Scheer, M.G. Mlynczak and P. Keckhut, OVERVIEW OF THE TEMPERATURE RESPONSE IN THE MESOSPHERE AND LOWER THERMOSPHERE TO SOLAR ACTIVITY, Reviews of Geophysics, 46, RG3002, https://doi.org/10.1029/2007RG000236
Tags: Lidar, Temperature

2001, Ramaswamy, V., M.L. Chanin, J. Angell, J. Barnett, D. Gaffen, M. Gelman, P. Keckhut, Y. Kolshelkov, K. Labitzke, J-J. R. Lin, A. O’Neill, J. Nash, W. Randel, R. Rood, K. Shine, M. Shiotani, and R. Swinbank, Stratospheric temperature changes: observations and model simulations, Reviews of Geophysics, 39, 71-122
Tags: Lidar, Model, Temperature