Water vapour and ozone are important for the thermal and radiative balance of the upper troposphere (UT) and lowermost stratosphere (LMS). Both species are modulated by transport processes. Chemical and microphysical processes affect them differently. Thus, representing the different processes and their interactions is a challenging task for dynamical cores, chemical modules and microphysical parameterisations of state-of-the-art atmospheric model components. To test and improve the models, high-resolution measurements of the UT–LMS are required. Here, we use measurements taken in a flight of the GLORIA (Gimballed Limb Observer for Radiance Imaging of the Atmosphere) instrument on HALO (High Altitude and LOng Range Research Aircraft). The G...
Airborne high resolution in situ measurements of a large set of trace gases including ozone (O3) and...
International audienceThe new Modular Earth Submodel System (MESSy) describes atmospheric chemistry ...
International audienceA three-dimensional (3-D) Chemical Transport Model (CTM) of the stratosphere h...
Water vapour and ozone are important for the thermal and radiative balance of the upper troposphere ...
The Arctic winter 2015–2016 was characterized by exceptionally low stratospheric temperatures, favou...
The Gimballed Limb Observer for Radiance Imaging of the Atmosphere (GLORIA) was operated on board th...
The chemical composition of the Upper Troposphere and Lower Stratosphere (UTLS) region and the dynam...
The Arctic winter 2015–2016 was characterized by exceptionally low stratospheric temperatures, favou...
The Arctic winter 2015/16 was characterized by exceptionally cold stratospheric temperatures, favour...
Coupling between processes of different nature, as radiation, dynamics and chemistry, in the upper t...
Recent studies have shown significant challenges for atmospheric models to simulate tropospheric ozo...
We investigate the impact of model trace gas transport schemes on the representation of transport pr...
The atmospheric global circulation, also referred to as the Brewer-Dobson circulation, controls the ...
Numerical weather forecast systems like the ECMWF IFS (European Centre for Medium-Range Weather Fore...
International audienceA model of atmospheric composition and climate has been developed at the NASA ...
Airborne high resolution in situ measurements of a large set of trace gases including ozone (O3) and...
International audienceThe new Modular Earth Submodel System (MESSy) describes atmospheric chemistry ...
International audienceA three-dimensional (3-D) Chemical Transport Model (CTM) of the stratosphere h...
Water vapour and ozone are important for the thermal and radiative balance of the upper troposphere ...
The Arctic winter 2015–2016 was characterized by exceptionally low stratospheric temperatures, favou...
The Gimballed Limb Observer for Radiance Imaging of the Atmosphere (GLORIA) was operated on board th...
The chemical composition of the Upper Troposphere and Lower Stratosphere (UTLS) region and the dynam...
The Arctic winter 2015–2016 was characterized by exceptionally low stratospheric temperatures, favou...
The Arctic winter 2015/16 was characterized by exceptionally cold stratospheric temperatures, favour...
Coupling between processes of different nature, as radiation, dynamics and chemistry, in the upper t...
Recent studies have shown significant challenges for atmospheric models to simulate tropospheric ozo...
We investigate the impact of model trace gas transport schemes on the representation of transport pr...
The atmospheric global circulation, also referred to as the Brewer-Dobson circulation, controls the ...
Numerical weather forecast systems like the ECMWF IFS (European Centre for Medium-Range Weather Fore...
International audienceA model of atmospheric composition and climate has been developed at the NASA ...
Airborne high resolution in situ measurements of a large set of trace gases including ozone (O3) and...
International audienceThe new Modular Earth Submodel System (MESSy) describes atmospheric chemistry ...
International audienceA three-dimensional (3-D) Chemical Transport Model (CTM) of the stratosphere h...