Publications

2018, Garcia, R.D., Barreto, A., Cuevas, E., Gröbner, J., García, O. E., Gómez-Peláez, A., Romero-Campos, P. M., Redondas, A., Cachorro, V. E., and Ramos, R., Comparison of observed and modeled cloud-free longwave downward radiation (2010–2016) at the high mountain BSRN Izaña station, Geoscientific Model Development, 11, 2139-2152, https://doi.org/10.5194/gmd-11-2139-2018
Tags: CH4, FTIR, N2O, Satellite, Validation

2018, Lakkala, K., Redondas, A., Meinander, O., Thölix, L., Hamari, B., Almansa Rodríguez, A. F., Carreno, V., García Cabrera, R. D., Torres, C., Deferrari, G., Ochoa, H., Bernhard, G., Sánchez, R. and Leeuw, G. de, UV measurements at Marambio and Ushuaia during 2000–2010, Atmospheric Chemistry and Physics, 18, 16019–16031, https://doi.org/10.5194/acp-18-16019-2018
Tags: Brewer, Ozone, UV Irradiance

2018, López-Solano, J., Redondas, A., Carlund, T., Rodriguez-Franco, J. J., Diémoz, H., León-Luis, S. F., Hernández-Cruz, B., Guirado-Fuentes, C., Kouremeti, N., Gröbner, J., Kazadzis, S., Carreño, V., Berjón, A., Santana-Díaz, D., Rodríguez-Valido, M., Bock, V. D., Moreta, J. R., Rimmer, J., Smedley, A. R. D., Boulkelia, L., Jepsen, N., Eriksen, P., Bais, A. F., Shirotov, V., Vilaplana, J. M., Wilson, K. M. and Karppinen, T., Aerosol optical depth in the European Brewer Network, Atmospheric Chemistry and Physics, 18, 3885–3902, https://doi.org/10.5194/acp-18-3885-2018
Tags: Aerosol, Brewer, Ozone

2017, Blanchard, Y., Alain Royer, Norman T. O'Neill, David D. Turner, and Edwin W. Eloranta, Thin ice clouds in the Arctic: cloud optical depth and particle size retrieved from ground-based thermal infrared radiometry, Atmospheric Measurement Techniques, 10, 2129–2147, https://doi.org/10.5194/amt-10-2129-2017
Tags: Clouds, FTIR, H2O

2017, Stübi, R., Herbert Schill, Jörg Klausen, Laurent Vuilleumier, Julian Gröbner, Luca Egli, Dominique Ruffieux, On the compatibility of Brewer total column ozone measurements in two adjacent valleys (Arosa and Davos) in the Swiss Alps, Atmospheric Measurement Techniques, 10, 4479–4490, https://doi.org/10.5194/amt-10-4479-2017
Tags: Brewer, Ozone

2017, Stübi, R., Schill, H., Klausen, J., Vuilleumier, L., and Ruffieux, D., Reproducibility of total ozone column monitoring by the Arosa Brewer spectrophotometer triad, Journal of Geophysical Research: Atmospheres, 122,4735–4745, https://doi.org/10.1002/2016JD025735
Tags: Brewer, Ozone

2016, Karppinen, T., Lakkala, K., Karhu, J. M., Heikkinen, P., Kivi, R., and Kyrö, E., Brewer spectrometer total ozone column measurements in Sodankylä, Geoscientific Instrumentation, Methods and Data Systems, 5, 229-239, https://doi.org/10.5194/gi-5-229-2016
Tags: Brewer, Ozone

2016, Zhao, X., Vitali Fioletov, Alexander Cede, Jonathan Davies, and Kimberly Strong, Accuracy, precision, and temperature dependence of Pandora total ozone measurements estimated from a comparison with the Brewer triad in Toronto, Atmospheric Measurement Techniques, 9, 5747–5761, https://doi.org/10.5194/amt-9-5747-2016
Tags: Brewer, Ozone, Temperature, Validation

2012, Hoareau, et al., A Raman lidar at La Reunion (20.8° S, 55.5° E) for monitoring water vapor and cirrus distributions in the subtropical upper troposphere: preliminary analyses and description of a future system, Atmospheric Measurement Techniques, 5 (6),1333-1348
Tags: Clouds, H2O, Lidar

2010, Di Biagio, C., Muscari, G., di Sarra, A., de Zafra, R. L., Eriksen, P., Fiorucci, I., and Fua, D., Evolution of temperature, O3, CO, and N2O profiles during the exceptional 2009 Arctic major stratospheric warming as observed by lidar and mm-wave spectroscopy at Thule (76.5°N, 68.8°W), Greenland, Journal of Geophysical Research, 115, D24315, https://doi.org/10.1029/2010JD014070
Tags: CO, Lidar, Microwave, N2O, Ozone