Our publications


Acquistapace, C., Meroni, A. N., Labbri, G., Lange, D., Späth, F., Abbas, S., & Bellenger, H. (2022). Fast atmospheric response to a cold oceanic mesoscale patch in the north-western tropical Atlantic. Journal of Geophysical Research: Atmospheres, 127, e2022JD036799. https://doi.org/10.1029/2022JD036799

Pîrloagă, Răzvan, Dragoş Ene, Mihai Boldeanu, Bogdan Antonescu, Ewan J. O’Connor, and Sabina Ştefan. 2022. "Ground-Based Measurements of Cloud Properties at the Bucharest–Măgurele Cloudnet Station: First Results" Atmosphere 13, no. 9: 1445. https://doi.org/10.3390/atmos13091445

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Martinet, P., Unger, V., Burnet, F. et al. A dataset of temperature, humidity, and liquid water path retrievals from a network of ground-based microwave radiometers dedicated to fog investigation. Bull. of Atmos. Sci.& Technol. 3, 6 (2022). https://doi.org/10.1007/s42865-022-00049-w



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Diémoz, Henri, Tiziana Magri, Giordano Pession, Claudia Tarricone, Ivan K.F. Tombolato, Gabriele Fasano, and Manuela Zublena. 2021. "Air Quality in the Italian Northwestern Alps during Year 2020: Assessment of the COVID-19 «Lockdown Effect» from Multi-Technique Observations and Models" Atmosphere 12, no. 8: 1006. https://doi.org/10.3390/atmos12081006

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Acquistapace, C., Coulter, R., Crewell, S., Garcia-Benadi, A., Gierens, R. T., Labbri, G., Myagkov, A., Risse, N., and Schween, J. H.: EUREC4A's Maria S. Merian ship-based cloud and micro rain radar observations of clouds and precipitation, Earth Syst. Sci. Data, https://doi.org/10.5194/essd-2021-265, 2021



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Rüfenacht, R., Haefele, A., Pospichal, B. et al. EUMETNET opens to microwave radiometers for operational thermodynamical profiling in Europe. Bull. of Atmos. Sci.& Technol. 2, 4 (2021).



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Gryning, S‐E, Batchvarova, E, Floors, R, Münkel, C, Skov, H, Sørensen, LL. Observed and modelled cloud cover up to 6 km height at Station Nord in the high Arctic. Int J Climatol. 2021; 41: 15841598. https://doi.org/10.1002/joc.6894



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Alyosef A., Cimini D., Luini L., Riva C., Marzano F.S., Biscarini M., Milani L., Martellucci A., Gentile S., Nilo S. T., Di Paola F., and Romano F.: Improving Atmospheric Path-attenuation estimates of radio propagation applications by microwave radiometric profiling, Atmos. Meas. Tech (Preprint), https://doi.org/10.5194/AMT-2020-309, 2021

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Kotthaus S., Haeffelin M., Drouin M.A., Dupont J.C., Grimmond S., Haefele A., Hervo M., Poltera Y., Wiegner M., 2020: Tailored algorithms for the Detection of the atmospheric Boundary layer height from Common Automatic Lidars and Ceilometers (ALC), Remote Sens, 12, 3259, DOI: 10.3390/rs12193259, https://www.mdpi.com/2072-4292/12/19/3259

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Turner, D. D. and Löhnert, U.: Ground-based Temperature and Humidity Profiling: Combining Active and Passive Remote Sensors, Atmos. Meas. Tech. Discuss., 2020, https://doi.org/10.5194/amt-2020-352, in review

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Martinet, P., Cimini, D., Burnet, F., Ménétrier, B., Michel, Y., and Unger, V.: Improvement of numerical weather prediction model analysis during fog conditions through the assimilation of ground-based microwave radiometer observations: a 1D-Var study, Atmos. Meas. Tech., 2020, https://doi.org/10.5194/amt-2020-166

 

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Dongxiang Wang, Iwona S. Stachlewska, Julien Delanoë, Dragos Ene, Xiaoquan Song, and Dirk Schüttemeyer, "Spatio-temporal discrimination of molecular, aerosol and cloud scattering and polarization using a combination of a Raman lidar, Doppler cloud radar and microwave radiometer," Opt. Express 28, 20117-20134 (2020)

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Cimini, D., Haeffelin, M., Kotthaus, S. et al. Towards the profiling of the atmospheric boundary layer at European scale—introducing the COST Action PROBE. Bull. of Atmos. Sci.& Technol. 1, 23–42 (2020) https://doi.org/10.1007/s42865-020-00003-8

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Created and developed by Claudia Acquistapace

COST is supported by the EU Framework Programme Horizon 2020