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| user:mmaahn [2025/11/23 08:41] – Maximilian Maahn | user:mmaahn [2026/05/04 06:44] (current) – Maximilian Maahn |
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| <panel type="primary" title="News" > | <panel type="primary" title="News" > |
| | * Nils Pfeifer's article about quantifying the droplet fragmentation secondary ice process has been published in [[https://doi.org/10/hbb7vv|Communications Earth & Environment]]! |
| * The WIVERN satellite mission will be the 11th ESA Earth Explorer! [[https://www.uni-leipzig.de/newsdetail/artikel/leipziger-wissenschaftler-an-neuer-weltraummission-der-esa-beteiligt-2025-09-23|German Press Release]] [[https://www.esa.int/Applications/Observing_the_Earth/FutureEO/ESA_selects_WIVERN_as_11th_Earth_Explorer_mission|English Press Release]] | * The WIVERN satellite mission will be the 11th ESA Earth Explorer! [[https://www.uni-leipzig.de/newsdetail/artikel/leipziger-wissenschaftler-an-neuer-weltraummission-der-esa-beteiligt-2025-09-23|German Press Release]] [[https://www.esa.int/Applications/Observing_the_Earth/FutureEO/ESA_selects_WIVERN_as_11th_Earth_Explorer_mission|English Press Release]] |
| * Listen to a (German) podcast interview about my background and my work: [[https://podcastaddict.com/episode/https%3A%2F%2Fmeteo-upas.podcaster.de%2Fkonvergenzzone%2Fmedia%2FKonvergenzzone_2025_F1.mp3&podcastId=5199270 |Podcast Konvergenzzone]] | * Listen to a (German) podcast interview about my background and my work: [[https://podcastaddict.com/episode/https%3A%2F%2Fmeteo-upas.podcaster.de%2Fkonvergenzzone%2Fmedia%2FKonvergenzzone_2025_F1.mp3&podcastId=5199270 |Podcast Konvergenzzone]] |
| * Member [[https://wivern.polito.it/|ESA WIVERN]] Mission Advisory Group (since 2021), [[https://www.arm.gov/about/constituent-groups/uec|ARM User Executive Committee]] (2018 - 2020) | * Member [[https://wivern.polito.it/|ESA WIVERN]] Mission Advisory Group (since 2021), [[https://www.arm.gov/about/constituent-groups/uec|ARM User Executive Committee]] (2018 - 2020) |
| * Editor [[https://www.atmospheric-measurement-techniques.net|Atmospheric Measurement Techniques]] (since 2020), Associate Editor [[https://journals.ametsoc.org/toc/apme/current|Journal of Applied Meteorology and Climatology]] (2016 - 2020) | * Editor [[https://www.atmospheric-measurement-techniques.net|Atmospheric Measurement Techniques]] (since 2020), Associate Editor [[https://journals.ametsoc.org/toc/apme/current|Journal of Applied Meteorology and Climatology]] (2016 - 2020) |
| * Reviewer: Atmospheric Chemistry and Physics, Atmospheric Measurement Techniques, Earth and Space Science, Geophysical Research Letters, IEEE Transactions on Geoscience and Remote Sensing, Journal of Applied Meteorology and Climatology, Journal of Atmospheric and Oceanic Technology, Journal of the Atmospheric Sciences, Journal of Geophysical Research, Nature Scientific Reports, Remote Sensing, Agence Nationale de la Recherche, DOE Atmospheric System Research program, Swiss National Science Foundation | * Reviewer (paper): Atmospheric Chemistry and Physics, Atmospheric Measurement Techniques, Earth and Space Science, Geophysical Research Letters, Hydrology and Earth System Sciences, IEEE Transactions on Geoscience and Remote Sensing, Journal of Applied Meteorology and Climatology, Journal of Atmospheric and Oceanic Technology, Journal of the Atmospheric Sciences, Journal of Geophysical Research, Nature Scientific Reports, Remote Sensing |
| * Conference Program Committee Member: [[https://ams.confex.com/ams/38RADAR/webprogram/meeting.html|AMS 38th Conference on Radar Meteorology 2017]], [[http://erad2016.mgm.gov.tr/|9th European Conference on Radar in Meteorology 2016]], [[http://www.met.reading.ac.uk/~sws04cdw/issw3_programme.html| 3rd International Summer Snowfall Workshop 2021]], [[https://monsun.meteo.uni-leipzig.de/~drops/issw4/| 4th International Summer Snowfall Workshop 2023]] | * Reviewer (projects): Agence Nationale de la Recherche, DOE Atmospheric System Research program, Swiss National Science Foundation |
| | * Conference Program Committee Member: [[https://ams.confex.com/ams/38RADAR/webprogram/meeting.html|AMS 38th Conference on Radar Meteorology 2017]], [[http://erad2016.mgm.gov.tr/|9th European Conference on Radar in Meteorology 2016]], International Summer Snowfall Workshop [[http://www.met.reading.ac.uk/~sws04cdw/issw3_programme.html| 2021]], [[https://monsun.meteo.uni-leipzig.de/~drops/issw4/| 2023]], [[https://www.met.reading.ac.uk/~sws04cdw/issw5.html|2025]] |
| | * Session (Co)convener: EGU General Assembly session "Clouds, moisture, and precipitation in the Polar Regions: Sources, processes and impacts" 2024, 2025, 2026 |
| * Organizer: Young Scientists Networking Meeting at the AMS 38th Conference on Radar Meteorology 2017 | * Organizer: Young Scientists Networking Meeting at the AMS 38th Conference on Radar Meteorology 2017 |
| | |
| ===== Grants ===== | ===== Grants ===== |
| | * 08/2026-07/2029: DFG project Quantifying Ice-Ice collisions in a natural Laboratory QuIIL (295 k€). |
| * 07/2024-06/2025: [[https://wivern.polito.it|ESA WIVERN]]. Mission Performance and requirement consolidation activity (150k€) | * 07/2024-06/2025: [[https://wivern.polito.it|ESA WIVERN]]. Mission Performance and requirement consolidation activity (150k€) |
| * 01/2024-12/2027: [[http://www.ac3-tr.de/|DFG (AC)3 project E05]]. Process-level Understanding of Sublimation and Evaporation of Precipitation (336 k€). | * 01/2024-12/2027: [[http://www.ac3-tr.de/|DFG (𝒜𝒞)³ project E05]]. Process-level Understanding of Sublimation and Evaporation of Precipitation (336 k€). |
| * 09/2023-12/2024: SMWK (Saxon State Ministry for Science, Culture and Tourism) project for preparing Breathing Nature Excellence Initiative (80 k€). | * 09/2023-12/2024: SMWK (Saxon State Ministry for Science, Culture and Tourism) project for preparing Breathing Nature Excellence Initiative (80 k€). |
| * 09/2023-08/2026: DFG project EMPOS Evaluating Microphysical Pathways Of Midlatitude Snow Formation EMPOS (256 k€). | * 09/2023-08/2026: DFG project Evaluating Microphysical Pathways Of Midlatitude Snow Formation EMPOS (256 k€). |
| * 06/2022-05/2026: [[https://www2.meteo.uni-bonn.de/spp2115/doku.php?id=obj2_corsipp|DFG SPP PROM project CORSIPP]]. Characterization of orography-influenced riming and secondary ice production and their effects on precipitation rates using radar polarimetry and Doppler spectra (349 k€). | * 06/2022-05/2026: [[https://www2.meteo.uni-bonn.de/spp2115/doku.php?id=obj2_corsipp|DFG SPP PROM project CORSIPP]]. Characterization of orography-influenced riming and secondary ice production and their effects on precipitation rates using radar polarimetry and Doppler spectra (349 k€). |
| * 01/2021-12/2023: [[http://www.ac3-tr.de/|DFG (AC)3 project B08]]. Characterising the spatial variability of ice water content in and below mixed-phase clouds (166 k€). | * 01/2021-12/2023: [[http://www.ac3-tr.de/|DFG (𝒜𝒞)³ project B08]]. Characterising the spatial variability of ice water content in and below mixed-phase clouds (166 k€). |
| * 05/2019: [[https://cires.colorado.edu/institutional-programs/innovative-research-program/projects|CIRES Innovative Research Program]]. Development of a visual in-situ snowfall sensor (VISSS) for MOSAiC ($ 20k). | * 05/2019: [[https://cires.colorado.edu/institutional-programs/innovative-research-program/projects|CIRES Innovative Research Program]]. Development of a visual in-situ snowfall sensor (VISSS) for MOSAiC ($ 20k). |
| * 07/2015-12/2015: [[https://geosciences.uni-koeln.de/gsgs|Graduate School of Geosciences of the University of Cologne]]. Potential of higher order moments of the radar Doppler spectrum for retrieving microphysical and kinematic properties of Arctic ice clouds (13k€) | * 07/2015-12/2015: [[https://geosciences.uni-koeln.de/gsgs|Graduate School of Geosciences of the University of Cologne]]. Potential of higher order moments of the radar Doppler spectrum for retrieving microphysical and kinematic properties of Arctic ice clouds (13k€) |
| * [[https://github.com/maahn/IMProToo|IMProToo]] Improved Mrr Processing Tool | * [[https://github.com/maahn/IMProToo|IMProToo]] Improved Mrr Processing Tool |
| * [[https://github.com/igmk/pamtra|PAMTRA]] & [[https://github.com/maahn/pamtra2|PAMTRA]] 2 Passive and Active Microwave TRAnsfer model | * [[https://github.com/igmk/pamtra|PAMTRA]] & [[https://github.com/maahn/pamtra2|PAMTRA]] 2 Passive and Active Microwave TRAnsfer model |
| * [[https://github.com/maahn/VISSSlib|VISSSlib]] Video In situ Snowfall Sensor Processign Library | * [[https://github.com/maahn/VISSSlib|VISSSlib]] Video In situ Snowfall Sensor Processing Library |
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| ===== Publications ===== | ===== Publications ===== |
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| 51) Lochmann, M., B. Haest, T. Vogl, R. van Klink, **F. I. Addison, M. Maahn**, C. Wirth, J. Quaas, and H. Kalesse-Los, Derivation of aerial insect concentration with triple frequency cloud radar observations. TGRS (in review).\\ | 51) Lochmann, M., B. Haest, T. Vogl, R. van Klink, **F. I. Addison, M. Maahn**, C. Wirth, J. Quaas, and H. Kalesse-Los, Derivation of aerial insect concentration with triple frequency cloud radar observations. TGRS (in review).\\ |
| 50) Kötsche, A., **M. Maahn, V. Ettrichrätz**, and H. Kalesse-Los, 2025: Snow microphysical processes in orographic turbulence revealed by cloud radar and in situ snowfall camera observations. Egusphere **(in review for ACP)**, 1–29, https://doi.org/10/g943zk. \\ | |
| 49) Teisseire, A., P. Seifert, K. Ohneiser, **M. Maahn**, R. Spirig, and J. Henneberger, 2025: Evaluation of the vertical distribution of particle shape (VDPS) method with in situ measurements and assessment of the impact of non-rayleigh scattering. EGUsphere **(in review for AMT)** https://doi.org/10.5194/egusphere-2025-3923. \\ | |
| 48) Pfreundschuh, S., M. Arulraj, A. Behrangi, L. Bogerd, A. J. P. Calheiros, D. Casella, N. Dolatabadi, C. Guilloteau, J. Gong, C. D. Kummerow, P. Kirstetter, G. Lee, **M. Maahn**, L. Milani, G. Panegrossi, R. Palharini, V. Petković, S. Ryu, P. Sanò, and J. Tan, 2025: A benchmark dataset for satellite-based estimation and detection of rain. https://doi.org/10.48550/arXiv.2509.08816. \\ | |
| 47) Ohneiser, K., M. Hartmann, H. Wex, P. Seifert, A. Hardt, A. Miller, K. Baudrexl, W. Thomas, **V. Ettrichrätz, M. Maahn**, T. Gaudek, W. Schimmel, F. Senf, H. Griesche, M. Radenz, and J. Henneberger, 2025: Ice-nucleating particle depletion in the wintertime boundary layer in the pre-alpine region during stratus cloud conditions. EGUsphere **(in review for ACP)**. https://doi.org/10.5194/egusphere-2025-3675. \\ | |
| |
| == accepted == | |
| |
| 46) Ohneiser, K., P. Seifert, W. Schimmel, F. Senf, T. Gaudek, M. Radenz, A. Teisseire, **V. Ettrichrätz**, T. Vogl, **N. Maherndl**, **N. Pfeifer**, J. Henneberger, A. J. Miller, N. Omanovic, C. Fuchs, H. Zhang, F. Ramelli, R. Spirig, A. Kötsche, H. Kalesse-Los, **M. Maahn**, H. Corden, A. Berne, M. Hajipour, H. Griesche, J. Hofer, R. Engelmann, A. Skupin, A. Ansmann, and H. Baars, 2025: Impact of seeder-feeder cloud interaction on precipitation formation: a case study based on extensive remote-sensing, in-situ and model data. Atmos. Chem. Phys. **(accepted)**, 1–38, | ==2026== |
| https://doi.org/10.5194/egusphere-2025-2482.\\ | 50) Teisseire, A., P. Seifert, K. Ohneiser, **M. Maahn**, R. Spirig, and J. Henneberger, 2026: Evaluation of the Vertical Distribution of Particle Shape (VDPS) method with in situ measurements and assessment of the impact of non-Rayleigh scattering. Atmos. Meas. Tech., 19, 2897–2921, https://doi.org/10/hb2cqq. \\ |
| | 49) Kötsche, A., **M. Maahn, V. Ettrichrätz**, and H. Kalesse-Los, 2026: Snow microphysical processes in orographic turbulence revealed by cloud radar and in situ snowfall camera observations. Atmos. Chem. Phys., 26, 3277–3297, https://doi.org/10.5194/acp-26-3277-2026. \\ |
| | 48) Ohneiser, K., M. Hartmann, H. Wex, P. Seifert, A. Hardt, A. Miller, K. Baudrexl, W. Thomas, **V. Ettrichrätz**, **M. Maahn**, T. Gaudek, W. Schimmel, F. Senf, H. Griesche, M. Radenz, and J. Henneberger, 2026: Ice-nucleating particle depletion in the wintertime boundary layer in the pre-alpine region during stratus cloud conditions. Atmos. Chem. Phys., 26, 3223–3236, https://doi.org/10/hbq874.\\ |
| | 47) Pfreundschuh, S., M. Arulraj, A. Behrangi, L. Bogerd, A. J. P. Calheiros, D. Casella, N. Dolatabadi, C. Guilloteau, J. Gong, C. D. Kummerow, P. Kirstetter, G. Lee, **M. Maahn**, L. Milani, G. Panegrossi, R. Palharini, V. Petković, S. Ryu, P. Sanó, and J. Tan, 2026: A Benchmark Dataset for Satellite-Based Estimation and Detection of Rain. Sci. Data, https://doi.org/10/hbk44p. |
| |
| ==2025== | ==2025== |
| | 46) Ohneiser, K., P. Seifert, W. Schimmel, F. Senf, T. Gaudek, M. Radenz, A. Teisseire, **V. Ettrichrätz**, T. Vogl, N. **Maherndl, N. Pfeifer**, J. Henneberger, A. J. Miller, N. Omanovic, C. Fuchs, H. Zhang, F. Ramelli, R. Spirig, A. Kötsche, H. Kalesse-Los, **M. Maahn**, H. Corden, A. Berne, M. Hajipour, H. Griesche, J. Hofer, R. Engelmann, A. Skupin, A. Ansmann, and H. Baars, 2025: Impact of seeder-feeder cloud interaction on precipitation formation: a case study based on extensive remote-sensing, in situ and model data. Atmos. Chem. Phys., 25, 17363–17386, https://doi.org/10/hbc8qs.\\ |
| 45) **Pfeifer, N.**, B. Mom, D. Moisseev, S. Hartmann, J. Meusel, C. Hoose, and **M. Maahn**, 2025: Efficient ice multiplication from freezing raindrop fragmentation. Commun. Earth Environ., 6, 942, https://doi.org/10/hbb7vv.\\ | 45) **Pfeifer, N.**, B. Mom, D. Moisseev, S. Hartmann, J. Meusel, C. Hoose, and **M. Maahn**, 2025: Efficient ice multiplication from freezing raindrop fragmentation. Commun. Earth Environ., 6, 942, https://doi.org/10/hbb7vv.\\ |
| 44) Kötsche, A., A. Myagkov, L. von Terzi, **M. Maahn**, **V. Ettrichrätz**, T. Vogl, A. Ryzhkov, P. Bukovcic, D. Ori, and H. Kalesse-Los, 2025: Investigating KDP signatures inside and below the dendritic growth layer with W-band doppler radar and in situ snowfall camera. Atmos. Chem. Phys., 25, 14045–14070, https://doi.org/10/g98dzc.\\ | 44) Kötsche, A., A. Myagkov, L. von Terzi, **M. Maahn**, **V. Ettrichrätz**, T. Vogl, A. Ryzhkov, P. Bukovcic, D. Ori, and H. Kalesse-Los, 2025: Investigating KDP signatures inside and below the dendritic growth layer with W-band doppler radar and in situ snowfall camera. Atmos. Chem. Phys., 25, 14045–14070, https://doi.org/10/g98dzc.\\ |
| 43) Scarsi, F. E., A. Battaglia, **M. Maahn**, and S. Lhermitte, 2025: How to reduce sampling errors in spaceborne cloud radar-based snowfall estimates. Cryosphere, 19, 4875–4892, https://doi.org/10/g97wbw.\\ | 43) Scarsi, F. E., A. Battaglia, **M. Maahn**, and S. Lhermitte, 2025: How to reduce sampling errors in spaceborne cloud radar-based snowfall estimates. Cryosphere, 19, 4875–4892, https://doi.org/10/g97wbw.\\ |
| 42) **Maherndl, N.**, A. Battaglia, A. Kötsche, and **M. Maahn**, 2025: Riming-dependent snowfall rate and ice water content retrievals for W-band cloud radar. Atmos. Meas. Tech., 18, 3287–3304, https://doi.org/10/g9vgvc.\\ | 42) **Maherndl, N.**, A. Battaglia, A. Kötsche, and **M. Maahn**, 2025: Riming-dependent snowfall rate and ice water content retrievals for W-band cloud radar. Atmos. Meas. Tech., 18, 3287–3304, https://doi.org/10/g9vgvc.\\ |
| 41) Ehrlich, A., and coauthors (including **M. Maahn**, **N. Maherndl**), 2025: A comprehensive in situ and remote sensing data set collected during the HALO–(AC)3 aircraft campaign. Earth Syst. Sci. Data, 17, 1295–1328, https://doi.org/10/g9bghk.\\ | 41) Ehrlich, A., and coauthors (including **M. Maahn**, **N. Maherndl**), 2025: A comprehensive in situ and remote sensing data set collected during the HALO–(𝒜𝒞)³ aircraft campaign. Earth Syst. Sci. Data, 17, 1295–1328, https://doi.org/10/g9bghk.\\ |
| D13) //**Maahn, M.**, and **V. Ettrichrätz**, 2025: Video In situ snowfall sensor (VISSS) data for Eriswil (2023-2024). https://doi.org/10.1594/PANGAEA.981222. // \\ | D13) //**Maahn, M.**, and **V. Ettrichrätz**, 2025: Video In situ snowfall sensor (VISSS) data for Eriswil (2023-2024). https://doi.org/10.1594/PANGAEA.981222. // \\ |
| D12) //**Maahn, M.**, **N. Maherndl**, and **N. Pfeifer**, 2025: Video In situ snowfall sensor (VISSS) data for Ny-Ålesund (january 2024 - december 2024). https://doi.org/10.1594/PANGAEA.981436. // \\ | D12) //**Maahn, M.**, **N. Maherndl**, and **N. Pfeifer**, 2025: Video In situ snowfall sensor (VISSS) data for Ny-Ålesund (january 2024 - december 2024). https://doi.org/10.1594/PANGAEA.981436. // \\ |
| |
| 40) **Maherndl, N.**, M. Moser, I. Schirmacher, A. Bansemer, J. Lucke, C. Voigt, and **M. Maahn**, 2024: How does riming influence the observed spatial variability of ice water in mixed-phase clouds? Atmos. Chem. Phys., 24, 13935–13960, https://doi.org/10.5194/10.5194/acp-24-13935-2024.\\ | 40) **Maherndl, N.**, M. Moser, I. Schirmacher, A. Bansemer, J. Lucke, C. Voigt, and **M. Maahn**, 2024: How does riming influence the observed spatial variability of ice water in mixed-phase clouds? Atmos. Chem. Phys., 24, 13935–13960, https://doi.org/10.5194/10.5194/acp-24-13935-2024.\\ |
| 39) Wendisch, M., and coauthors (including **M. Maahn**, **N. Maherndl**), 2024: Overview: quasi-Lagrangian observations of Arctic air mass transformations – introduction and initial results of the HALO–(𝒜 𝒞)3 aircraft campaign. Atmospheric Chemistry and Physics, 24, 8865–8892, https://doi.org/10.5194/acp-24-8865-2024.\\ | 39) Wendisch, M., and coauthors (including **M. Maahn**, **N. Maherndl**), 2024: Overview: quasi-Lagrangian observations of Arctic air mass transformations – introduction and initial results of the HALO–(𝒜𝒞)³ aircraft campaign. Atmospheric Chemistry and Physics, 24, 8865–8892, https://doi.org/10.5194/acp-24-8865-2024.\\ |
| 38) Mahecha, M. D., A. Bastos, F. J. Bohn, N. Eisenhauer, H. Feilhauer, T. Hickler, H. Kalesse-Los, M. Migliavacca, F. E. L. Otto, J. Peng, S. Sippel, I. Tegen, A. Weigelt, M. Wendisch, C. Wirth, D. Al-Halbouni, H. Deneke, D. Doktor, S. Dunker, G. Duveiller, A. Ehrlich, A. Foth, A. García-García, C. A. Guerra, C. Guimarães-Steinicke, H. Hartmann, S. Henning, H. Herrmann, P. Hu, C. Ji, T. Kattenborn, N. Kolleck, M. Kretschmer, I. Kühn, M. L. Luttkus, **M. Maahn**, M. Mönks, K. Mora, M. Pöhlker, M. Reichstein, N. Rüger, B. Sánchez-Parra, M. Schäfer, F. Stratmann, M. Tesche, B. Wehner, S. Wieneke, A. J. Winkler, S. Wolf, S. Zaehle, J. Zscheischler, and J. Quaas, 2024: Biodiversity and Climate Extremes: Known Interactions and Research Gaps. Earth’s Future, 12, e2023EF003963, https://doi.org/10.5194/10.1029/2023EF003963.\\ | 38) Mahecha, M. D., A. Bastos, F. J. Bohn, N. Eisenhauer, H. Feilhauer, T. Hickler, H. Kalesse-Los, M. Migliavacca, F. E. L. Otto, J. Peng, S. Sippel, I. Tegen, A. Weigelt, M. Wendisch, C. Wirth, D. Al-Halbouni, H. Deneke, D. Doktor, S. Dunker, G. Duveiller, A. Ehrlich, A. Foth, A. García-García, C. A. Guerra, C. Guimarães-Steinicke, H. Hartmann, S. Henning, H. Herrmann, P. Hu, C. Ji, T. Kattenborn, N. Kolleck, M. Kretschmer, I. Kühn, M. L. Luttkus, **M. Maahn**, M. Mönks, K. Mora, M. Pöhlker, M. Reichstein, N. Rüger, B. Sánchez-Parra, M. Schäfer, F. Stratmann, M. Tesche, B. Wehner, S. Wieneke, A. J. Winkler, S. Wolf, S. Zaehle, J. Zscheischler, and J. Quaas, 2024: Biodiversity and Climate Extremes: Known Interactions and Research Gaps. Earth’s Future, 12, e2023EF003963, https://doi.org/10.5194/10.1029/2023EF003963.\\ |
| 37) Lee, J., P. Seifert, T. Hashino, **M. Maahn**, F. Senf, and O. Knoth, 2024: Simulations of the impact of cloud condensation nuclei and ice-nucleating particles perturbations on the microphysics and radar reflectivity factor of stratiform mixed-phase clouds. Atmos. Chem. Phys., 24, 5737–5756, https://doi.org/10.5194/10.5194/acp-24-5737-2024.\\ | 37) Lee, J., P. Seifert, T. Hashino, **M. Maahn**, F. Senf, and O. Knoth, 2024: Simulations of the impact of cloud condensation nuclei and ice-nucleating particles perturbations on the microphysics and radar reflectivity factor of stratiform mixed-phase clouds. Atmos. Chem. Phys., 24, 5737–5756, https://doi.org/10.5194/10.5194/acp-24-5737-2024.\\ |
| 36) **Maherndl, N.**, M. Moser, J. Lucke, M. Mech, N. Risse, I. Schirmacher, and **M. Maahn**, 2024: Quantifying riming from airborne data during HALO-(AC)3. Atmos. Meas. Tech., 17, 1475–1495, https://doi.org/10.5194/amt-17-1475-2024.\\ | 36) **Maherndl, N.**, M. Moser, J. Lucke, M. Mech, N. Risse, I. Schirmacher, and **M. Maahn**, 2024: Quantifying riming from airborne data during HALO-(𝒜𝒞)³. Atmos. Meas. Tech., 17, 1475–1495, https://doi.org/10.5194/amt-17-1475-2024.\\ |
| 35) **Maahn, M.**, D. Moisseev, **I. Steinke**, **N. Maherndl**, and M. D. Shupe, 2024: Introducing the Video In Situ Snowfall Sensor (VISSS). Atmos. Meas. Tech., 17, 899–919, https://doi.org/10.5194/amt-17-899-2024.\\ | 35) **Maahn, M.**, D. Moisseev, **I. Steinke**, **N. Maherndl**, and M. D. Shupe, 2024: Introducing the Video In Situ Snowfall Sensor (VISSS). Atmos. Meas. Tech., 17, 899–919, https://doi.org/10.5194/amt-17-899-2024.\\ |
| D10) //Ehrlich, A., M. Wendisch, S. Crewell, C. Lüpkes, M. Mech, M. Klingebiel, F. Ament, S. Borrmann, H. Dorff, F. Ewald, G. George, I. Gorodetskaya, S. Groß, **M. Maahn**, M. Moser, R. Neggers, D. Ori, F. Pithan, V. Pörtge, J. Röttenbacher, V. Schemann, J. Schneider, C. Voigt, and A. Walbröl, 2024: Collection of flight reports from the HALO-(AC)³ campaign. https://doi.org/10.5281/zenodo.11184578. //\\ | D10) //Ehrlich, A., M. Wendisch, S. Crewell, C. Lüpkes, M. Mech, M. Klingebiel, F. Ament, S. Borrmann, H. Dorff, F. Ewald, G. George, I. Gorodetskaya, S. Groß, **M. Maahn**, M. Moser, R. Neggers, D. Ori, F. Pithan, V. Pörtge, J. Röttenbacher, V. Schemann, J. Schneider, C. Voigt, and A. Walbröl, 2024: Collection of flight reports from the HALO-(𝒜𝒞)³ campaign. https://doi.org/10.5281/zenodo.11184578. //\\ |
| D9) //**Maahn, M.**, and **N. Maherndl**, 2024: Video In Situ Snowfall Sensor (VISSS) data for Ny-Ålesund (July 2022 - December 2023). https://doi.org/10.1594/PANGAEA.965766. //\\ | D9) //**Maahn, M.**, and **N. Maherndl**, 2024: Video In Situ Snowfall Sensor (VISSS) data for Ny-Ålesund (July 2022 - December 2023). https://doi.org/10.1594/PANGAEA.965766. //\\ |
| D8) //**Maahn, M.**, and S. Wolter, 2024: Hardware design of the Video In Situ Snowfall Sensor v3 (VISSS3). https://doi.org/10.5281/zenodo.10526898. //\\ | D8) //**Maahn, M.**, and S. Wolter, 2024: Hardware design of the Video In Situ Snowfall Sensor v3 (VISSS3). https://doi.org/10.5281/zenodo.10526898. //\\ |
| |
| ===== Invited Talks===== | ===== Invited Talks===== |
| | * Combining in situ and remote sensing observations for studying precipitation formation, Colloquium, Kyungpook National University, Korea, 2025 |
| * What Every Atmospheric Scientist Should Know About Inverse Modelling, Seminar in Microwave Physics, University of Bern, 2021 | * What Every Atmospheric Scientist Should Know About Inverse Modelling, Seminar in Microwave Physics, University of Bern, 2021 |
| * Spatial variability of cloud properties at the North Slope of Alaska. Colloquium, Leipzig University, 2019. | * Spatial variability of cloud properties at the North Slope of Alaska. Colloquium, Leipzig University, 2019. |