The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a specific attention to the Earth Explorer Missions in the frame of ESA's Living Planet Program. We report simulations under a variety of atmospheric scenarios, demonstrating the capability of a space Raman lidar to provide global-scale water vapour and temperature measurements in the troposphere with an accuracy fulfilling most observational requirements for numerical weather prediction (NWP) and climate research
Our understanding of the distribution of heat and water in the atmosphere still shows critical gaps ...
Our understanding of the distribution of heat and water in the atmosphere still shows critical gaps ...
International audienceOur understanding of the distribution of heat and water in the atmosphere stil...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
The performance of a space-borne water vapour and temperature lidar exploiting the vibrational and p...
The performance of a space-borne water vapour and temperature lidar exploiting the vibrational and p...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
The performance of a space-borne water vapour and temperature lidar exploiting the vibrational and p...
Our understanding of the distribution of heat and water in the atmosphere still shows ...
Our understanding of the distribution of heat and water in the atmosphere still shows ...
Our understanding of the distribution of heat and water in the atmosphere still shows critical gaps ...
Our understanding of the distribution of heat and water in the atmosphere still shows critical gaps ...
Our understanding of the distribution of heat and water in the atmosphere still shows critical gaps ...
International audienceOur understanding of the distribution of heat and water in the atmosphere stil...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
The performance of a space-borne water vapour and temperature lidar exploiting the vibrational and p...
The performance of a space-borne water vapour and temperature lidar exploiting the vibrational and p...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
The performance of a space-borne water vapour and temperature lidar exploiting the vibrational and p...
Our understanding of the distribution of heat and water in the atmosphere still shows ...
Our understanding of the distribution of heat and water in the atmosphere still shows ...
Our understanding of the distribution of heat and water in the atmosphere still shows critical gaps ...
Our understanding of the distribution of heat and water in the atmosphere still shows critical gaps ...
Our understanding of the distribution of heat and water in the atmosphere still shows critical gaps ...
International audienceOur understanding of the distribution of heat and water in the atmosphere stil...