0000-0002-1129-3406

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Journal Article

Lainer, Martin; Hocke, Klemens; Eckert, Ellen; Kämpfer, Niklaus (2019). Significant decline of mesospheric water vapor at the NDACC site near Bern in the period 2007 to 2018. Atmospheric chemistry and physics, 19(9), pp. 6611-6620. European Geosciences Union 10.5194/acp-19-6611-2019

Hocke, Klemens; Lainer, Martin Lorenz Maximilian; Bernet, Leonie Anna Luisa; Kämpfer, Niklaus (2018). Mesospheric Inversion Layers at Mid-Latitudes and Coincident Changes of Ozone, Water Vapour and Horizontal Wind in the Middle Atmosphere. Atmosphere, 9(5), p. 171. MDPI 10.3390/atmos9050171

Lainer, Martin; Hocke, Klemens; Kämpfer, Niklaus (2018). Long-term observation of midlatitude quasi 2-day waves by a water vapor radiometer. Atmospheric chemistry and physics, 18(16), pp. 12061-12074. European Geosciences Union 10.5194/acp-18-12061-2018

Lainer, Martin Lorenz Maximilian; Hocke, Klemens; Eckert, Ellen; Kämpfer, Niklaus (2018). Significant decline of mesospheric water vapor at the NDACC site Bern in the period 2007 to 2018. Atmospheric chemistry and physics Discussions, pp. 1-16. European Geosciences Union 10.5194/acp-2018-711

Lainer, Martin; Hocke, Klemens; Rüfenacht, Rolf; Schranz, Franziska; Kämpfer, Niklaus (2017). Interactive comment on “Quasi 18-hour wave activity in ground-based observed mesospheric H₂O over Bern, Switzerland”. Atmospheric chemistry and physics Discussions, pp. 1-29. European Geosciences Union 10.5194/acp-2016-1050

Nedoluha, Gerald E.; Kiefer, Michael; Lossow, Stefan; Gomez, R. Michael; Kämpfer, Niklaus; Lainer, Martin Lorenz Maximilian; Forkman, Peter; Christensen, Ole Martin; Oh, Jung Jin; Hartogh, Paul; Anderson, John; Bramstedt, Klaus; Dinelli, Bianca M.; Garcia-Comas, Maya; Hervig, Mark; Murtagh, Donal; Raspollini, Piera; Read, William G.; Rosenlof, Karen; Stiller, Gabriele P.; ... (2017). The SPARC water vapor assessment II: intercomparison of satellite and ground-based microwave measurements. Atmospheric chemistry and physics, 17(23), pp. 14543-14558. European Geosciences Union 10.5194/acp-17-14543-2017

Unterstrasser, Simon; Gierens, Klaus; Sölch, Ingo; Lainer, Martin Lorenz Maximilian (2017). Numerical simulations of homogeneously nucleated natural cirrus and contrail-cirrus. Part 1: How different are they? Meteorologische Zeitschrift, 26(6), pp. 621-642. Borntraeger 10.1127/metz/2016/0777

Lainer, Martin Lorenz Maximilian; Hocke, Klemens; Kämpfer, Niklaus (2016). Variability of mesospheric water vapor above Bern in relation to the 27-day solar rotation cycle. Journal of atmospheric and solar-terrestrial physics, 143-144, pp. 71-87. Elsevier Science 10.1016/j.jastp.2016.03.008

Hocke, Klemens; Lainer, Martin Lorenz Maximilian; Moreira Méndez, Lorena; Hagen, Jonas; Fernandez Vidal, Susana; Schranz, Franziska Martina (2016). Atmospheric inertia-gravity waves retrieved from level-2 data of the satellite microwave limb sounder Aura/MLS. Annales geophysicae, 34(9), pp. 781-788. Gauthier-Villars 10.5194/angeo-34-781-2016

Lainer, Martin Lorenz Maximilian; Kämpfer, Niklaus; Tschanz, Brigitte; Nedoluha, G. E.; Ka, S.; Oh, J. J. (2015). Trajectory mapping of middle atmospheric water vapor by a mini network of NDACC instruments. Atmospheric chemistry and physics, 15(16), pp. 9711-9730. European Geosciences Union 10.5194/acp-15-9711-2015

Hocke, Klemens; Lainer, Martin Lorenz Maximilian; Schanz, Ansgar Ulrich (2015). Composite analysis of a major sudden stratospheric warming. Annales geophysicae, 33(6), pp. 783-788. Gauthier-Villars 10.5194/angeo-33-783-2015

Lainer, Martin Lorenz Maximilian; Kämpfer, Niklaus; Tschanz, Brigitte; Nedoluha, G. E.; Ka, S.; Oh, J. J. (2015). Trajectory mapping of middle atmospheric water vapor by a mini network of NDACC instruments. Atmospheric chemistry and physics Discussions, 15(8), pp. 12777-12819. European Geosciences Union 10.5194/acpd-15-12777-2015

Conference or Workshop Item

Lainer, Martin; Brennan, Killian P.; Hering, Alessandro M.; Kopp, Jérôme; Monhart, Samuel; Portmann, Jannis; Wolfensberger, Daniel; Germann, Urs (1 March 2024). Drone-based photogrammetry combined with deep-learning to estimate hail size distributions and melting of hail on the ground (Unpublished). In: 4th European Hail Workshop. Karslruhe. 05-07.03.2024.

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