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| user:mmaahn [2026/04/17 12:41] – Maximilian Maahn | user:mmaahn [2026/05/04 06:44] (current) – Maximilian Maahn |
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| ==2026== | ==2026== |
| 50) 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 **(accepted for AMT)** https://doi.org/10.5194/egusphere-2025-3923. \\ | 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. \\ | 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.\\ | 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.\\ |