Two focused coherent, continuous wave (CW) lidars have been developed by the Marshall Space Flight Center (MSFC) for airborne and ground-based measurement of aerosol backscatter coefficients. The first of these instruments uses a mixture of CO2 and other gases, and measures backscatter at 10.6 m. The second lidar uses an isotope of carbon dioxide, which enables lasing at 9.1 m. The 10.6 m backscatter measurement serves as a reference to allow variations in backscatter due to aerosol concentration to be distinguished from variations due to spectral variability. The 10.6 m lidar has been used in airborne field programs since 1981. Development of the 9.1 m lidar was completed in early 1989. Recently, both lidars were flown on the NASA/Ames Res...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
An incoherent CO₂ laser radar, or lidar, system using a tunable CO₂ TEA laser has been developed, al...
A pulsed CO2 Doppler Lidar, developed for airborne measurements of atmospheric wind fields, is descr...
Atmospheric backscatter data collected during the Global Backscatter Experiment (GLOBE) 1 and GLOBE ...
The Aerosol/Lidar Science Group of the Remote Sensing Branch engages in experimental and theoretical...
Experimental and theoretical studies were performed of atmospheric aerosol backscatter and atmospher...
The performance and calibration of a focused, continuous wave, coherent detection CO2 lidar operated...
Understanding the earth's carbon cycle is essential for diagnosing current and predicting future cli...
We have developed a pulsed lidar technique for measuring the tropospheric CO2 concentrations as a ca...
During the first year two areas of work were emphasized, analysis of aerosol data to provide improve...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
We have developed a pulsed lidar technique for measuring the tropospheric CO2 concentrations as a ca...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
An incoherent CO₂ laser radar, or lidar, system using a tunable CO₂ TEA laser has been developed, al...
A pulsed CO2 Doppler Lidar, developed for airborne measurements of atmospheric wind fields, is descr...
Atmospheric backscatter data collected during the Global Backscatter Experiment (GLOBE) 1 and GLOBE ...
The Aerosol/Lidar Science Group of the Remote Sensing Branch engages in experimental and theoretical...
Experimental and theoretical studies were performed of atmospheric aerosol backscatter and atmospher...
The performance and calibration of a focused, continuous wave, coherent detection CO2 lidar operated...
Understanding the earth's carbon cycle is essential for diagnosing current and predicting future cli...
We have developed a pulsed lidar technique for measuring the tropospheric CO2 concentrations as a ca...
During the first year two areas of work were emphasized, analysis of aerosol data to provide improve...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
We have developed a pulsed lidar technique for measuring the tropospheric CO2 concentrations as a ca...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
A novel method for coherent Doppler wind lidars (DWLs) calibration is shown in this work. Concurrent...
An incoherent CO₂ laser radar, or lidar, system using a tunable CO₂ TEA laser has been developed, al...
A pulsed CO2 Doppler Lidar, developed for airborne measurements of atmospheric wind fields, is descr...