The OH airglow has been used to investigate the chemistry and dynamics of the mesosphere and the lower thermosphere (MLT) for a long time. The infrared imager (IRI) aboard the Odin satellite has been recording the night-time 1.53 mu m OH (3-1) emission for more than 15 years (2001-2015), and we have recently processed the complete data set. The newly derived data products contain the volume emission rate profiles and the Gaussian-approximated layer height, thickness, peak intensity and zenith intensity, and their corresponding error estimates. In this study, we describe the retrieval steps for these data products. We also provide data screening recommendations. The monthly zonal averages depict the well-known annual oscillation and semi-ann...
Its long photochemical lifetime makes H2O a good tracer for mesospheric dynamics. Temperature observ...
OSIRIS, a Canadian built instrument on-board the Swedish-led remote sensing satellite, Odin, consist...
Into year 11 of a 2-yr mission, OSIRIS is redefining how limb-scattered sunlight can be used to prob...
The OH airglow has been used to investigate the chemistry and dynamics of the mesosphere and the low...
The nightglow emission originating from the vibrationally excited hydroxyl layer (about 85 km altitu...
Observing airglow emissions allows us to explore the chemical composition and dynamics of the upper ...
In the mesosphere, the vibrationally excited hydroxyl layer is sensitive to changes in incoming sola...
The Optical Spectrograph and Infrared Imaging System (OSIRIS) on the Odin satellite currently has an...
Abstract: The optical spectrograph and infrared imager system (OSIRIS) on board the Odin spacecraft ...
The Optical Spectrograph and InfraRed Imaging System (OSIRIS) was launched aboard the Odin satellite...
International audienceA 7+ year (2001–2008) data set of stratospheric BrO profiles measured by the O...
The Mesosphere and Lower Thermosphere/Ionosphere (MLTI) plays an important role in the energy balanc...
Measurements by OSIRIS, an infrared imaging system that measures emission from excited-state molecul...
This paper presents the validation study of stratospheric NO2 profiles retrieved from Odin/OSIRIS me...
We consider 5 years of spectrometer measurements of OH(6–2) and O2(0–1) airglow emission intensities...
Its long photochemical lifetime makes H2O a good tracer for mesospheric dynamics. Temperature observ...
OSIRIS, a Canadian built instrument on-board the Swedish-led remote sensing satellite, Odin, consist...
Into year 11 of a 2-yr mission, OSIRIS is redefining how limb-scattered sunlight can be used to prob...
The OH airglow has been used to investigate the chemistry and dynamics of the mesosphere and the low...
The nightglow emission originating from the vibrationally excited hydroxyl layer (about 85 km altitu...
Observing airglow emissions allows us to explore the chemical composition and dynamics of the upper ...
In the mesosphere, the vibrationally excited hydroxyl layer is sensitive to changes in incoming sola...
The Optical Spectrograph and Infrared Imaging System (OSIRIS) on the Odin satellite currently has an...
Abstract: The optical spectrograph and infrared imager system (OSIRIS) on board the Odin spacecraft ...
The Optical Spectrograph and InfraRed Imaging System (OSIRIS) was launched aboard the Odin satellite...
International audienceA 7+ year (2001–2008) data set of stratospheric BrO profiles measured by the O...
The Mesosphere and Lower Thermosphere/Ionosphere (MLTI) plays an important role in the energy balanc...
Measurements by OSIRIS, an infrared imaging system that measures emission from excited-state molecul...
This paper presents the validation study of stratospheric NO2 profiles retrieved from Odin/OSIRIS me...
We consider 5 years of spectrometer measurements of OH(6–2) and O2(0–1) airglow emission intensities...
Its long photochemical lifetime makes H2O a good tracer for mesospheric dynamics. Temperature observ...
OSIRIS, a Canadian built instrument on-board the Swedish-led remote sensing satellite, Odin, consist...
Into year 11 of a 2-yr mission, OSIRIS is redefining how limb-scattered sunlight can be used to prob...