The mesospheric OH layer varies on several timescales, primarily driven by variations in atomic oxygen, temperature, density and transport (advection). Vibrationally excited OH airglow intensity, rotational temperature and altitude are closely interrelated and thus accompany each other through these changes. A correct interpretation of the OH layer variability from airglow measurements requires the study of the three variables simultaneously. Ground-based instruments measure excited OH intensities and temperatures with high temporal resolution, but they do not generally observe altitude directly. Information on the layer height is crucial in order to identify the sources of its variability and the causes of discrepancies in measurements and...
Simultaneous measurements of mesospheric OH (6–2) Meinel and O2 (0–1) Atmospheric band emissions fro...
Measurements of hydroxyl nightglow emissions over Longyearbyen (78 N, 16 E) recorded simultaneously...
This work investigates the mesospheric OH* airglow layer. Ground-based observations of its Meinel em...
The mesospheric OH layer varies on several timescales, primarily driven by variations in atomic oxy...
Hydroxyl (OH) brightness temperatures from the mesopause region derived from temperature profiles f...
Analyses of OH zonal means, recorded at boreal high latitudes by the Aura Microwave Limb Sounder (ML...
Mesospheric OH radiance limb profiles measured by the Sounding of the Atmosphere using Broadband Emi...
More than 3 years of airglow observations with a Spectral Airglow Temperature Imager (SATI) insta...
The layer of vibrationally excited hydroxyl (OH*) near the mesopause in Earth's atmosphere is widely...
International audienceMore than 3 years of airglow observations with a Spectral Airglow Temperature ...
Two computerized tilting-filter photometers and a programmable dual axis mirror system have been use...
Rotational temperatures Trot from OH line intensities are an important approach to study the Earth's...
The presence of planetary wave type oscillations at mid-latitudes in the mesosphere/lower thermosph...
International audienceAirglow observations with a Spectral Airglow Temperature Imager (SATI), instal...
The hydroxyl (OH) rotational temperature and band emission rate have been derived using year-round, ...
Simultaneous measurements of mesospheric OH (6–2) Meinel and O2 (0–1) Atmospheric band emissions fro...
Measurements of hydroxyl nightglow emissions over Longyearbyen (78 N, 16 E) recorded simultaneously...
This work investigates the mesospheric OH* airglow layer. Ground-based observations of its Meinel em...
The mesospheric OH layer varies on several timescales, primarily driven by variations in atomic oxy...
Hydroxyl (OH) brightness temperatures from the mesopause region derived from temperature profiles f...
Analyses of OH zonal means, recorded at boreal high latitudes by the Aura Microwave Limb Sounder (ML...
Mesospheric OH radiance limb profiles measured by the Sounding of the Atmosphere using Broadband Emi...
More than 3 years of airglow observations with a Spectral Airglow Temperature Imager (SATI) insta...
The layer of vibrationally excited hydroxyl (OH*) near the mesopause in Earth's atmosphere is widely...
International audienceMore than 3 years of airglow observations with a Spectral Airglow Temperature ...
Two computerized tilting-filter photometers and a programmable dual axis mirror system have been use...
Rotational temperatures Trot from OH line intensities are an important approach to study the Earth's...
The presence of planetary wave type oscillations at mid-latitudes in the mesosphere/lower thermosph...
International audienceAirglow observations with a Spectral Airglow Temperature Imager (SATI), instal...
The hydroxyl (OH) rotational temperature and band emission rate have been derived using year-round, ...
Simultaneous measurements of mesospheric OH (6–2) Meinel and O2 (0–1) Atmospheric band emissions fro...
Measurements of hydroxyl nightglow emissions over Longyearbyen (78 N, 16 E) recorded simultaneously...
This work investigates the mesospheric OH* airglow layer. Ground-based observations of its Meinel em...