2021
Half-yearly Aeolus Cal/Val report Q2 2021 – Template for measurement teams
Half-yearly Aeolus Cal/Val report Q4 2021 – Template for measurement teams
Experimental assessment of a micro-pulse lidar system in comparison with reference lidar measurements for aerosol optical properties retrieval
Wildfire smoke, Arctic haze, and aerosol effects on mixed-phase and cirrus clouds over the North Pole region during MOSAiC: An introduction
Advection of biomass burning aerosols towards the southern hemispheric mid-latitude station of Punta Arenas as observed with multiwavelength polarization Raman lidar
Contrasting ice formation in Arctic clouds: Surface-coupled vs. surface-decoupled clouds
The unexpected smoke layer in the High Arctic winter stratosphere during MOSAiC 2019–2020
Hemispheric contrasts in ice formation in stratiform mixed-phase clouds: Disentangling the role of aerosol and dynamics with ground-based remote sensing
Influence of low-level blocking and turbulence on the microphysics of a mixed-phase cloud in an inner-Alpine valley
Microphysical investigation of the seeder and feeder region of an Alpine mixed-phase cloud
Impact of aerosol layering, complex aerosol mixing, and cloud coverage on high-resolution MAIAC aerosol optical depth measurements: Fusion of lidar, AERONET, satellite, and ground-based measurements
2020
Experimentelle Validierung und Assimilation von Aeolus Beobachtungen: Validierung der Aerosol‐ und Windprodukte durch bodengebundene Instrumente des TROPOS (Zwischenbericht 2020)
Half-yearly Aeolus Cal/Val report Q2 2020 – Template for measurement teams
Validation of Aeolus wind products above the Atlantic Ocean
Spatiotemporal variability of solar radiation introduced by clouds over Arctic Sea ice
Optical and geometrical aerosol particle properties over the United Arab Emirates
ACTRIS Aerosol Remote Sensing COVID-19 campaign data of May 2020
ACTRIS Aerosol Remote Sensing Data during the COVID-19 pandemic
Cloudnet ice particles effective radius during PS106. Leibniz-Institut für Troposphärenforschung e.V., Leipzig
Cloudnet IWC during PS106. Leibniz-Institut für Troposphärenforschung e.V., Leipzig
Cloudnet liquid droplet effective radius during PS106. Leibniz-Institut für Troposphärenforschung e.V., Leipzig
Cloudnet LWC during PS106. Leibniz-Institut für Troposphärenforschung e.V., Leipzig
Cloudnet target categorization during PS106. Leibniz-Institut für Troposphärenforschung e.V., Leipzig
Cloudnet target classification during PS106. Leibniz-Institut für Troposphärenforschung e.V., Leipzig
OCEANET-ATMOSPHERE Cloud radar Mira-35 during PS106. Leibniz-Institut für Troposphärenforschung e.V., Leipzig
OCEANET-ATMOSPHERE low level stratus clouds during PS106. Leibniz-Institut für Troposphärenforschung e.V., Leipzig
OCEANET-ATMOSPHERE Microwave Radiometer HATPRO during PS106. Leibniz-Institut für Troposphärenforschung e.V., Leipzig
Application of the shipborne remote sensing supersite OCEANET for profiling of Arctic aerosols and clouds during Polarstern cruise PS106
Long-term profiling of aerosol light extinction, particle mass, cloud condensation nuclei, and ice-nucleating particle concentration over Dushanbe, Tajikistan, in Central Asia
Optical properties of Central Asian aerosol relevant for spaceborne lidar applications and aerosol typing at 355 and 532 nm
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