Publications

2023, Ortega, I., B. Gaubert, J.W. Hannigan, G. Brasseur, H.M. Worden, T. Blumenstock, H. Fu, F. Hase, P. Jeseck, N. Jones, C. Liu, E. Mahieu, I. Morino, I. Murata, J. Notholt, M. Palm, A. Röhling, Y. Té, K. Strong, Y. Sun, S. Yamanouchi, Anomalies of O3, CO, C2H2, H2CO, and C2H6 detected with multiple ground-based Fourier-transform infrared spectrometers and assessed with model simulation in 2020: COVID-19 lockdowns versus natural variability, Elementa: Science of the Anthropocene, 11 (1): 00015, https://doi.org/10.1525/elementa.2023.00015
Tags: C2H2, C2H6, CO, COVID, FTIR, H2CO, Ozone

2022, Butz, A., Hanft V., Kleinschek R., Frey M. M., Müller A., Knapp M., Morino I., Agusti-Panareda A., Hase F., Landgraf J., Vardag S., Tanimoto H., Versatile and Targeted Validation of Space-Borne XCO2, XCH4 and XCO Observations by Mobile Ground-Based Direct-Sun Spectrometers, Frontiers in Remote Sensing, 2, 53, https://doi.org/10.3389/frsen.2021.775805
Tags: FTIR, Validation, XCH4, XCO, XCO2

2022, Chang, K., Cooper O., Gaudel A., Allaart M., Ancellet G., Clark H., Godin-Beekmann S., Leblanc T., van Malderen R., Nédélec P., Petropavlovskikh I. et al., Impact of the COVID‐19 Economic Downturn on Tropospheric Ozone Trends: An Uncertainty Weighted Data Synthesis for Quantifying Regional Anomalies Above Western North America and Europe, AGU Advances, 3 (2), pp.e2021AV000542, https://dx.doi.org/10.1029/2021av000542
Tags: COVID, Lidar, Ozone, Trends

2019, Zhou, M., Langerock, B., Sha, M. K., Kumps, N., Hermans, C., Petri, C., Warneke, T., Chen, H., Metzger, J.-M., Kivi, R., Heikkinen, P., Ramonet, M., and De Mazière, M, Retrieval of atmospheric CH4 vertical information from ground-based FTS near-infrared spectra, Atmospheric Measurement Techniques, 12, 6125–6141, https://doi.org/10.5194/amt-12-6125-2019
Tags: FTIR, XCO

2016, Kiel, M., Frank Hase, Thomas Blumenstock, and Oliver Kirner, Comparison of XCO abundances from the Total Carbon Column Observing Network and the Network for the Detection of Atmospheric Composition Change measured in Karlsruhe, Atmospheric Measurement Techniques, 9, 2223–2239, https://doi.org/10.5194/amt-9-2223-2016
Tags: FTIR, XCO

2014, Fitzka, M., Hadzimustafic, J., and Simic, S., Total ozone and Umkehr observations at Hoher Sonnblick 1994–2011: Climatology and extreme events, Journal of Geophysical Research: Atmospheres, 119, 739–752
Tags: Climatology, Ozone, Spectral UV

2008, Gil, M., Yela, M., Gunn, L. N., Richter, A., Alonso, I., Chipperfield, M. P., Cuevas, E., Iglesias, J., Navarro, M., Puentedura, O., and Rodríguez, S., NO2 climatology in the northern subtropical region: diurnal, seasonal and interannual variability, Atmospheric Chemistry and Physics, 8, 1635-1648
Tags: Climatology, Diurnal, NO2, Satellite, UVVis

2007, Bernhard, G., C. R. Booth, J. C. Ehramjian, R. Stone, and E. G. Dutton, Ultraviolet and visible radiation at Barrow, Alaska: climatology and influencing factors on the basis of version 2 National Science Foundation network data, Journal of Geophysical Research, 112, D09101, https://doi.org/10.1029/2006JD007865
Tags: Climatology, Spectral UV, UV Irradiance

2006, Massoli, P., Maturilli, M., Neuber, R., Climatology of Arctic polar stratospheric clouds as measured by lidar in Ny-Alesund, Spitsbergen [79° N,12° E], Journal of Geophysical Research: Atmospheres, 111(D9), D09206, https://doi.org/10.1029/2005JD005840
Tags: Climatology, Lidar, PSC

2006, Bernhard, G., C. R. Booth, J. C. Ehramjian, and S. E. Nichol, UV climatology at McMurdo Station, Antarctica, based on Version 2 data of the National Science Foundation's Ultraviolet Radiation Monitoring Network, Journal of Geophysical Research, 111, D11201, https://doi.org/10.1029/2005JD005857
Tags: Climatology, Spectral UV, UV Irradiance