We have assimilated for the first time SPICAM retrievals of total ozone into a Martian global circulation model to provide a global reanalysis of the ozone cycle. Disagreement in total ozone between model prediction and assimilation is observed between 45°S–10°S from LS=135–180° and at northern polar (60°N–90°N) latitudes during northern fall (LS=150–195°). Large percentage differences in total ozone at northern fall polar latitudes identified through the assimilation process are linked with excessive northward transport of water vapour west of Tharsis and over Arabia Terra. Modelling biases in water vapour can also explain the underestimation of total ozone between 45°S–10°S from LS=135–180°. Heterogeneous uptake of odd hydrogen radicals a...
International audienceThe dual UV/IR spectrometer SPICAM on board the European mission Mars Express ...
International audienceThe SPICAM/MEX ultraviolet spectrometer probed the Martian atmosphere with the...
AbstractWe demonstrate for the first time that total ozone in the martian atmosphere is highly corre...
International audienceWe have assimilated for the first time SPICAM retrievals of total ozone into a...
The technique of data assimilation gives us an opportunity to further our understanding of important...
To further our understanding of important photochemical processes in the Martian atmosphere, a synth...
Observations of atmospheric ozone on Mars can be used to develop the representation of trace gas tra...
Martian atmospheric ozone is a chemically sensitive trace gas, which can be used as a proxy for shor...
International audienceOzone (O3) in the atmosphere of Mars is produced following the photolysis of C...
International audienceWe present the first three-dimensional model simulations of ozone on Mars. The...
The mid-infrared channel of the Atmospheric Chemistry Suite (ACS MIR) onboard the ExoMars Trace Gas ...
The aim of this project is to assimilate, for the first time, ozone measurements into a Mars atmosph...
International audienceThe SPICAM/MEX spectrometer probed the Martian atmosphere with ultraviolet ste...
In this project, ozone will be retrieved and mapped in the Martian atmosphere using nadir and occult...
International audienceThe dual UV/IR spectrometer SPICAM on board the European mission Mars Express ...
International audienceThe SPICAM/MEX ultraviolet spectrometer probed the Martian atmosphere with the...
AbstractWe demonstrate for the first time that total ozone in the martian atmosphere is highly corre...
International audienceWe have assimilated for the first time SPICAM retrievals of total ozone into a...
The technique of data assimilation gives us an opportunity to further our understanding of important...
To further our understanding of important photochemical processes in the Martian atmosphere, a synth...
Observations of atmospheric ozone on Mars can be used to develop the representation of trace gas tra...
Martian atmospheric ozone is a chemically sensitive trace gas, which can be used as a proxy for shor...
International audienceOzone (O3) in the atmosphere of Mars is produced following the photolysis of C...
International audienceWe present the first three-dimensional model simulations of ozone on Mars. The...
The mid-infrared channel of the Atmospheric Chemistry Suite (ACS MIR) onboard the ExoMars Trace Gas ...
The aim of this project is to assimilate, for the first time, ozone measurements into a Mars atmosph...
International audienceThe SPICAM/MEX spectrometer probed the Martian atmosphere with ultraviolet ste...
In this project, ozone will be retrieved and mapped in the Martian atmosphere using nadir and occult...
International audienceThe dual UV/IR spectrometer SPICAM on board the European mission Mars Express ...
International audienceThe SPICAM/MEX ultraviolet spectrometer probed the Martian atmosphere with the...
AbstractWe demonstrate for the first time that total ozone in the martian atmosphere is highly corre...