We present the application of the Optimal Estimation Method (OEM) to retrieve atmospheric temperatures from pure rotational Raman (PRR) backscatter lidar measurements. A forward model (FM) is developed to retrieve temperature and tested using synthetic measurements. The OEM offers many advantages for this analysis, including eliminating the need to determine temperature calibration coefficients
OEM (Optimal Estimation Method) retrievals of temperature from lidar measurements are robust and pra...
International audienceThe temperature is a fundamental parameter for meteorology and climatology. It...
Measurements of atmospheric temperature have been performed by the NASA Scanning Raman Lidar based o...
We present the application of the Optimal Estimation Method (OEM) to retrieve atmospheric temperatur...
Background: Temperature is an important atmospheric parameter that plays an extensive role in the fi...
The optimal estimation method (OEM) has a long history of use in passive remote sensing, but has onl...
International audienceA lidar method using the anti-Stokes rotational lines of N/sub 2/ and O/sub 2/...
Calibration functions (CFs) are required for the pure rotational Raman (PRR) technique to retrieve a...
Accurate measurements of relative humidity (RH) vertical profiles in the atmosphere is important for...
Among lidar techniques, the pure rotational Raman (PRR) technique is the best suited for tropospheri...
At University of Hohenheim we have developed the first scanning rotational Raman lidar. This instrum...
Using the Hampton University (HU) Mie and Raman lidar, tropospheric temperature profiles were inferr...
In this paper a pure rotational Raman lidar (PRR) was established for the atmospheric temperature me...
A new pure rotational Raman lidar (PRRL) system at a wavelength of 532.25 nm has been designed for p...
Lidars are ideally placed to investigate the effects of aerosol and cloud on the climate system due ...
OEM (Optimal Estimation Method) retrievals of temperature from lidar measurements are robust and pra...
International audienceThe temperature is a fundamental parameter for meteorology and climatology. It...
Measurements of atmospheric temperature have been performed by the NASA Scanning Raman Lidar based o...
We present the application of the Optimal Estimation Method (OEM) to retrieve atmospheric temperatur...
Background: Temperature is an important atmospheric parameter that plays an extensive role in the fi...
The optimal estimation method (OEM) has a long history of use in passive remote sensing, but has onl...
International audienceA lidar method using the anti-Stokes rotational lines of N/sub 2/ and O/sub 2/...
Calibration functions (CFs) are required for the pure rotational Raman (PRR) technique to retrieve a...
Accurate measurements of relative humidity (RH) vertical profiles in the atmosphere is important for...
Among lidar techniques, the pure rotational Raman (PRR) technique is the best suited for tropospheri...
At University of Hohenheim we have developed the first scanning rotational Raman lidar. This instrum...
Using the Hampton University (HU) Mie and Raman lidar, tropospheric temperature profiles were inferr...
In this paper a pure rotational Raman lidar (PRR) was established for the atmospheric temperature me...
A new pure rotational Raman lidar (PRRL) system at a wavelength of 532.25 nm has been designed for p...
Lidars are ideally placed to investigate the effects of aerosol and cloud on the climate system due ...
OEM (Optimal Estimation Method) retrievals of temperature from lidar measurements are robust and pra...
International audienceThe temperature is a fundamental parameter for meteorology and climatology. It...
Measurements of atmospheric temperature have been performed by the NASA Scanning Raman Lidar based o...