Annett Skupin
Leibniz Association
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Publication
Featured researches published by Annett Skupin.
Geophysical Research Letters | 2014
Thomas Kanitz; Ronny Engelmann; Bernd Heinold; Holger Baars; Annett Skupin; A. Ansmann
Saharan dust was observed with shipborne lidar from 60° to 20°W along 14.5°N during a 1-month transatlantic cruise of the research vessel Meteor. About 4500 km off the coast of Africa, mean extinction and backscatter-related Angstrom exponent of 0.1, wavelength-independent extinction-to-backscatter ratios (lidar ratios) of around 45 sr, and particle linear depolarization ratio of 20% were found for aged dust (transport time >10 days). In contrast, dust with a shorter atmospheric residence time of 2–3 days showed Angstrom exponents of −0.5 (backscatter coefficient) and 0.1 (extinction coefficient), mean lidar ratios of 64 and 50 sr, and particle linear depolarization ratios of 22 and 26% at 355 and 532 nm wavelength, respectively. Traces of fire smoke were also detected in the observed dust layers. The lidar observations were complemented by Aerosol Robotic Network handheld Sun photometer measurements, which revealed a mean total atmospheric column aerosol optical thickness of 0.05 for pure marine conditions (in the absence of lofted aerosol layers) and roughly 0.9 during a strong Saharan dust outbreak. The achieved data set was compared with first Consortium for Small Scale Modeling-Multi-Scale Chemistry Aerosol Transport simulations. The simulated vertical aerosol distribution showed good agreement with the lidar observations.
Remote Sensing of Clouds and the Atmosphere XVIII; and Optics in Atmospheric Propagation and Adaptive Systems XVI | 2013
Johannes Bühl; Patric Seifert; Ulla Wandinger; Holger Baars; Thomas Kanitz; Jörg Schmidt; Alexander Myagkov; Ronny Engelmann; Annett Skupin; Birgit Heese; André Klepel; Dietrich Althausen; A. Ansmann
The study of interactions between aerosol particles, atmospheric dynamics and clouds and their resulting corresponding indirect effects on precipitation and radiative transfer demand new measurement strategies combining the strength of lidar, radar, and in-situ instrumentation. To match this challenge the Leipzig Aerosol and Cloud Remote Observations System (LACROS) has been set up at TROPOS, combining the strengths of a unique set of active and passive remote sensing and in-situ measurement systems.
Atmospheric Measurement Techniques | 2016
Ronny Engelmann; Thomas Kanitz; Holger Baars; Birgit Heese; Dietrich Althausen; Annett Skupin; Ulla Wandinger; M. Komppula; Iwona S. Stachlewska; V. Amiridis; Eleni Marinou; I. Mattis; Holger Linné; Albert Ansmann
Atmospheric Chemistry and Physics | 2016
Holger Baars; Thomas Kanitz; Ronny Engelmann; Dietrich Althausen; Birgit Heese; M. Komppula; Jana Preißler; Matthias Tesche; Albert Ansmann; Ulla Wandinger; Jae-Hyun Lim; Joon Young Ahn; Iwona S. Stachlewska; V. Amiridis; Eleni Marinou; Patric Seifert; Julian Hofer; Annett Skupin; Florian Schneider; Stephanie Bohlmann; Andreas Foth; Sebastian Bley; A. Pfüller; Eleni Giannakaki; Heikki Lihavainen; Yrjö Viisanen; R. K. Hooda; S. N. Pereira; Daniele Bortoli; Frank Wagner
Atmospheric Chemistry and Physics | 2017
Albert Ansmann; Franziska Rittmeister; Ronny Engelmann; S. Basart; Oriol Jorba; C. Spyrou; Samuel Remy; Annett Skupin; Holger Baars; Patric Seifert; Fabian Senf; Thomas Kanitz
Atmospheric Measurement Techniques | 2013
Annett Skupin; A. Ansmann; Ronny Engelmann; Holger Baars; T. Müller
Atmospheric Chemistry and Physics | 2015
Annett Skupin; A. Ansmann; Ronny Engelmann; Patric Seifert; T. Müller
Atmospheric Chemistry and Physics | 2017
Franziska Rittmeister; Albert Ansmann; Ronny Engelmann; Annett Skupin; Holger Baars; Thomas Kanitz; Stefan Kinne
Atmospheric Chemistry and Physics | 2017
Franziska Rittmeister; Albert Ansmann; Ronny Engelmann; Annett Skupin; Holger Baars; Thomas Kanitz; Stefan Kinne
Atmospheric Measurement Techniques Discussions | 2015
Ronny Engelmann; Thomas Kanitz; Holger Baars; Birgit Heese; Dietrich Althausen; Annett Skupin; Ulla Wandinger; M. Komppula; Iwona S. Stachlewska; V. Amiridis; Eleni Marinou; I. Mattis; Holger Linné; A. Ansmann