Publications

2019, Tarasick, D.W., T.K. Carey-Smith, W.K. Hocking, O. Moeini, H. He, J. Liu, M. Osman, A.M. Thompson, B. Johnson, S.J. Oltmans and J.T. Merrill, Quantifying stratosphere-troposphere transport of ozone using balloon-borne ozonesondes, radar windprofilers and trajectory models, Atmospheric Environment, 198, 496-509, https://doi.org/10.1016/j.atmosenv.2018.10.040
Tags: FTIR, Lidar, Ozone, Trends

2019, Taquet, N., Stremme W, Grutter M, Baylón J, Bezanilla A, Schiavo B, Rivera C, Campion R, Boulesteix T, Nieto-Torres A, Espinasa-Pereña R, Blumenstock T and Hase F, Variability in the Gas Composition of the Popocatépetl Volcanic Plume, Frontiers in Earth Science, 8:54, https://doi.org/10.3389/feart.2019.00114
Tags: FTIR, Volcano

2019, Ranjbar, K., N.T. O’Neill, E. Lutsch, E.M. McCullough, Y. AboEl-Fetouha, P. Xian, K. Strong, V.E. Fioletov, G. Lesins, and I. Abboud, Extreme smoke event over the high Arctic, Atmospheric Environment, 218, 117002, https://doi.org/10.1016/j.atmosenv.2019.117002
Tags: Aerosol, FTIR

2019, Gruzdev, A.N., Accounting for serial correlation in a multiple linear regression problem on the example of analysis of the column NO2 content in the atmosphere, Izvestiya, Atmospheric and Oceanic Physics, 55, 65–72, https://doi.org/10.1134/S0001433819010043
Tags: NO2, UVVis

2018, Gruzdev, A.N., V.Yu. Ageyeva, A.S. Elokhov, Changes in vertical distribution and column content of NO2 under the influence of Influence of sudden stratospheric warmings, Izvestiya, Atmospheric and Oceanic Physics, 54, 354–363, https://doi.org/10.1134/S0001433818040229
Tags: NO2, UVVis

2018, Cherepova, M.V., S.P. Smyshlyaev, M.V. Makarova, Yu.M. Timofeyev, A.V. Poberovskiy, and G.M. Shved, A Study of the Column Methane Short-Term Variability in the Atmosphere on a Regional Scale, Izvestiya, Atmospheric and Oceanic Physics, 54, 5, 558–569, https://doi.org/10.1134/S0001433818060038
Tags: CH4, FTIR

2015, Gaudel, A., G. Ancellet, S. Godin-Beekmann, Analysis of 20 years of tropospheric ozone vertical profiles by lidar and ECC at Observatoire de Haute Provence (OHP) at 44°N, 6.7°E, Atmospheric Environment, 113, 2015, 78-89, https://doi.org/10.1016/j.atmosenv.2015.04.028
Tags: Lidar, Ozone, Sonde

2014, Andrey, J., E. Cuevas, M.C. Parrondo, S. Alonso-Pérez, A. Redondas, M. Gil-Ojeda, Quantification of ozone reductions within the Saharan air layer through a 13-year climatologic analysis of ozone profiles, Atmospheric Environment, 84, 28-34
Tags: Ozone, Sonde, Trends

2010, Clain, G., et al., A Lagrangian approach to analyse the tropospheric ozone climatology in the tropics: Climatology of stratosphere-troposphere exchange at Reunion Island, Atmospheric Environment, 44, 968–975
Tags: Lidar, Ozone

2008, Johnson, B.J., Helmig, H., and S. Oltmans, Evaluation of ozone measurements from a tethered balloon-sampling platform at South Pole Station in December 2003, Atmospheric Environment, 42, 2780-2787, https://doi.org/10.1016/j.atmosenv.2007.03.043
Tags: Ozone, Sonde