Laser sources with highly stabilized emission wavelength is of paramount importance for a long term atmospheric carbon dioxide (CO2) measurement from a space platform. Integrated Path Differential Absorption (IPDA) lidar is a promising instrument for such a task. The design of a laser transmitter, with emphasis on the method used to control and select several wavelengths, is presented. This multi-pulsed, injection seeded, 2-m transmitter uses a Ho:Tm:YLF laser crystal which has matching emission to the absorption of CO2 in the R30 spectroscopic area. The injection seeded laser produces triple single longitudinal mode transform limited line width pulses with a total of 80 mJ at a repetition rate of 50 Hz
Carbon dioxide (CO2) is an important greenhouse gas that significantly contributes to the carbon cyc...
In this paper, we report on the progresses of the BRITESPACE Consortium in order to achieve space-bo...
The availability of suitable laser sources is one of the main challenges in future space missions fo...
A CO2 lidar double-pulse two-micron high-energy transmitter, tuned to on- and off-line absorption wa...
A high repetition rate, highly efficient, Q-switched 2-micron laser system as the transmitter of a c...
An airborne 2-micron triple-pulse integrated path differential absorption (IPDA) lidar is currently ...
We report a fiber-based, pulsed laser seeder system that rapidly switches among 6 wavelengths across...
For more than 15 years, NASA Langley Research Center (LaRC) has contributed in developing several 2-...
The 2-micron wavelength region is suitable for atmospheric carbon dioxide (CO2) measurements due to ...
Double-pulse 2-micron lasers have been demonstrated with energy as high as 600 millijouls and up to ...
A tunable multiatmospheric pulsed CO2 laser with emphasis on experimental features and supporting th...
An advanced double-pulsed 2-micron integrated path differential absorption lidar has been developed ...
Accurate global measurements of tropospheric CO2 mixing ratios are needed to study CO2 emissions and...
The societal benefits of understanding climate change through identification of global carbon dioxid...
The availability of suitable laser sources is one of the main challenges in future space missions fo...
Carbon dioxide (CO2) is an important greenhouse gas that significantly contributes to the carbon cyc...
In this paper, we report on the progresses of the BRITESPACE Consortium in order to achieve space-bo...
The availability of suitable laser sources is one of the main challenges in future space missions fo...
A CO2 lidar double-pulse two-micron high-energy transmitter, tuned to on- and off-line absorption wa...
A high repetition rate, highly efficient, Q-switched 2-micron laser system as the transmitter of a c...
An airborne 2-micron triple-pulse integrated path differential absorption (IPDA) lidar is currently ...
We report a fiber-based, pulsed laser seeder system that rapidly switches among 6 wavelengths across...
For more than 15 years, NASA Langley Research Center (LaRC) has contributed in developing several 2-...
The 2-micron wavelength region is suitable for atmospheric carbon dioxide (CO2) measurements due to ...
Double-pulse 2-micron lasers have been demonstrated with energy as high as 600 millijouls and up to ...
A tunable multiatmospheric pulsed CO2 laser with emphasis on experimental features and supporting th...
An advanced double-pulsed 2-micron integrated path differential absorption lidar has been developed ...
Accurate global measurements of tropospheric CO2 mixing ratios are needed to study CO2 emissions and...
The societal benefits of understanding climate change through identification of global carbon dioxid...
The availability of suitable laser sources is one of the main challenges in future space missions fo...
Carbon dioxide (CO2) is an important greenhouse gas that significantly contributes to the carbon cyc...
In this paper, we report on the progresses of the BRITESPACE Consortium in order to achieve space-bo...
The availability of suitable laser sources is one of the main challenges in future space missions fo...