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user:afoth [2021/03/05 16:46] Andreas Fothuser:afoth [2022/06/17 11:38] (current) – [Publications] Anna Trosits
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 Phone: +49 341/97-36661 \\ Phone: +49 341/97-36661 \\
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 University of Leipzig\\ University of Leipzig\\
 Institute for Meteorology\\ Institute for Meteorology\\
-Stephans. 3\\+Stephanstr. 3\\
 04103 Leipzig\\ 04103 Leipzig\\
 \\ \\
 Office:\\ Office:\\
 Prager Straße 34, Room 503\\ Prager Straße 34, Room 503\\
-04317 Leipzig+04317 Leipzig\\
  
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-**[[http://orcid.org/0000-0002-1164-3576|ORCID Profile]]   [[https://scholar.google.de/citations?user=qESYgXcAAAAJ&hl=de|Google Scholar Profile]]   [[https://publons.com/researcher/1640233/andreas-foth/ |Publons Profile]]   [[https://www.researchgate.net/profile/Andreas-Foth/ |ResearchGate]]   [[https://publons.com/researcher/1640233/andreas-foth/ |Research ID]]**+** 
 +[[https://scholar.google.de/citations?user=qESYgXcAAAAJ&hl=de|Google Scholar Profile]] \\ 
 +[[http://orcid.org/0000-0002-1164-3576|ORCID Profile]] \\ 
 +[[https://publons.com/researcher/1640233/andreas-foth/ |Publons Profile]] \\ 
 +[[https://www.researchgate.net/profile/Andreas-Foth/ |ResearchGate]] \\ 
 +[[https://publons.com/researcher/1640233/andreas-foth/ |Research ID]] 
 +**
  
 My research mainly addresses the determination of the state of the atmosphere using ground-based and spaceborn remote sensing, both active and passive. Which measurement instruments can be usefully combined to observe a height profile of the entire troposphere, especially during cloud cover and precipitation? How could we use such measurements to parameterize precipitation evaporation, for example? My research mainly addresses the determination of the state of the atmosphere using ground-based and spaceborn remote sensing, both active and passive. Which measurement instruments can be usefully combined to observe a height profile of the entire troposphere, especially during cloud cover and precipitation? How could we use such measurements to parameterize precipitation evaporation, for example?
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 ==== Professional career ==== ==== Professional career ====
  
-  * since 01/2017: Scientific employee, Leipzig Institute for Meteorology (LIM), University of Leipzig, Germany\\ 
-  * 01/2013 - 01/2017: PhD student, Leipzig Institute for Meteorology (LIM), University of Leipzig, Germany\\ 
  
 +  * since 04/2020: Scientific employee at Leipzig Institute for Meteorology (LIM), University of Leipzig, Germany\\
 +  * 01/2020 - 03/2020: Scientific employee at the Leibniz Institute for Tropospheric Research (TROPOS)\\
 +  * 01/2017 - 12/2019: Scientific employee at Leipzig Institute for Meteorology (LIM), University of Leipzig, Germany\\
 +  * 01/2013 - 01/2017: PhD student at Leipzig Institute for Meteorology (LIM), University of Leipzig, Germany\\
 ==== Education ==== ==== Education ====
  
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 ===== Publications ===== ===== Publications =====
 +**2022**
  
-**2020** +Schimmel, W., Kalesse-Los, H., Maahn, M., Vogl, T., **Foth, A.**, Garfias, P. S., and Seifert, P.: Identifying cloud droplets beyond lidar attenuation from vertically-pointing cloud radar observations using artificial neural networks, Atmos. Meas. Tech. Discuss. [preprint], https://doi.org/10.5194/amt-2022-149, in review, 2022.
  
-Ansmann, A., Ohneiser, K., Mamouri, R.-E., Knopf, D. A., Veselovskii, I., Baars, H., Engelmann, R., **Foth, A.**, JimenezC., SeifertP., and BarjaB.: Tropospheric and stratospheric wildfire smoke profiling with lidar: Masssurface area, CCN and INP retrievalAtmosChem. Phys. Discuss. [preprint], https://doi.org/10.5194/acp-2020-1093, in review2020+**Foth, A.**, BühlJ., RadenzM., LehmannV., and Kalesse-LosH.: Ein innovativer Ansatz um Temperatur und Feuchteprofile aus Radar-Windprofilermessungen zu bestimmen, DACH2022, https://doi.org/10.5194/dach2022-232022.
  
-**Foth, A.**, Zimmer, J., Lauermann, F.and Kalesse, H.: Evaluation of micro rain radar-based precipitation classification algorithms to discriminate between stratiform and convective precipitation, Atmos. Meas. Tech. Discuss. [preprint], https://doi.org/10.5194/amt-2020-290in review, 2020+**2021** 
 + 
 +Ansmann, A., Ohneiser, K., Mamouri, R.-E., Knopf, D. A., Veselovskii, I., Baars, H., Engelmann, R., **Foth, A.**, Jimenez, C., Seifert, P., and Barja, B.: Tropospheric and stratospheric wildfire smoke profiling with lidar: Mass, surface area, CCN and INP retrieval, Atmos. Chem. Phys., https://doi.org/10.5194/acp-21-9779-2021, 2021.  
 + 
 +**Foth, A.**, Zimmer, J., Lauermann, F. and Kalesse-Los, H.: Evaluation of micro rain radar-based precipitation classification algorithms to discriminate between stratiform and convective precipitation, Atmos. Meas. Tech., https://doi.org/10.5194/amt-14-4565-20212021 
 + 
 + 
 +**2020** 
  
 Ohneiser, K., Ansmann, A., Baars, H., Seifert, P., Barja, B., Jimenez, C., Radenz, M., Teisseire, A., Floutsi, A., Haarig, M., **Foth, A.**, Chudnovsky, A., Engelmann, R., Zamorano, F., Bühl, J., and Wandinger, U.: Smoke of extreme Australian bushfires observed in the stratosphere over Punta Arenas, Chile, in January 2020: optical thickness, lidar ratios, and depolarization ratios at 355 and 532 nm, Atmos. Chem. Phys., 20, 8003–8015, https://doi.org/10.5194/acp-20-8003-2020, 2020.  Ohneiser, K., Ansmann, A., Baars, H., Seifert, P., Barja, B., Jimenez, C., Radenz, M., Teisseire, A., Floutsi, A., Haarig, M., **Foth, A.**, Chudnovsky, A., Engelmann, R., Zamorano, F., Bühl, J., and Wandinger, U.: Smoke of extreme Australian bushfires observed in the stratosphere over Punta Arenas, Chile, in January 2020: optical thickness, lidar ratios, and depolarization ratios at 355 and 532 nm, Atmos. Chem. Phys., 20, 8003–8015, https://doi.org/10.5194/acp-20-8003-2020, 2020. 
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  • Last modified: 2021/03/05 16:46
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