The MATS satellite aims at observing airglow and noctilucent clouds in the mesosphere. The main instrument consists of a six channels limb imager in the near-ultraviolet and near-infrared. A high signal-to-noise ratio is required for detecting these mesospheric phenomena: 100 and 500 for ultraviolet and infrared, respectively. This is achieved by an optical design minimizing stray-light, but also with a dedicated design of the read-out analogue chain for the CCD on each channel. The requirements and expected light level on the imaging channels are brie y discussed before focusing on the CCD read-out analogue chain, for which the design and performances are presented
The middle atmosphere is a very important part of the Earth system. Until recently, we did not reali...
Atmospheric gravity waves are disturbances in the atmosphere and near-space environments caused by d...
A satellite borne extreme ultraviolet solar telescope makes use of CCD area arrays for both image re...
MATS (Mesospheric Airglow/Aerosol Tomography and Spectroscopy) is a small satellite that will belaun...
We present optical characterization, calibration, and performance tests of the Mesospheric Airglow/A...
To investigate the influence of atmospheric waves in the mesosphere, a new Swedish satellite MATS (M...
The Swedish science-satellite MATS (Mesopheric Airglow/Aerosol Tomography and Spectroscopy) willbe l...
In this study, simulations and measurements were used to investigate stray light properties of the t...
Satellite remote sensing of atmospheric properties is important for the investigation of atmospheric...
Global three-dimensional data are a key to understanding gravity waves in the mesosphere and lower t...
International audienceA small and sophisticated optical depth sensor (ODS) has been designed to work...
In the mesosphere and lower thermosphere (MLT) region, atomic oxygen and hydrogen are the most abund...
Aerosols play an important role in atmospheric interactions and in radiative balance. Aerosols have ...
An Atmospheric Monitoring System (AMS) is a mandatory and key device of a space-based mission which ...
Mini-EUSO is the first mission of the JEM-EUSO program located on the International Space Station. O...
The middle atmosphere is a very important part of the Earth system. Until recently, we did not reali...
Atmospheric gravity waves are disturbances in the atmosphere and near-space environments caused by d...
A satellite borne extreme ultraviolet solar telescope makes use of CCD area arrays for both image re...
MATS (Mesospheric Airglow/Aerosol Tomography and Spectroscopy) is a small satellite that will belaun...
We present optical characterization, calibration, and performance tests of the Mesospheric Airglow/A...
To investigate the influence of atmospheric waves in the mesosphere, a new Swedish satellite MATS (M...
The Swedish science-satellite MATS (Mesopheric Airglow/Aerosol Tomography and Spectroscopy) willbe l...
In this study, simulations and measurements were used to investigate stray light properties of the t...
Satellite remote sensing of atmospheric properties is important for the investigation of atmospheric...
Global three-dimensional data are a key to understanding gravity waves in the mesosphere and lower t...
International audienceA small and sophisticated optical depth sensor (ODS) has been designed to work...
In the mesosphere and lower thermosphere (MLT) region, atomic oxygen and hydrogen are the most abund...
Aerosols play an important role in atmospheric interactions and in radiative balance. Aerosols have ...
An Atmospheric Monitoring System (AMS) is a mandatory and key device of a space-based mission which ...
Mini-EUSO is the first mission of the JEM-EUSO program located on the International Space Station. O...
The middle atmosphere is a very important part of the Earth system. Until recently, we did not reali...
Atmospheric gravity waves are disturbances in the atmosphere and near-space environments caused by d...
A satellite borne extreme ultraviolet solar telescope makes use of CCD area arrays for both image re...