The two-micron wavelength is suitable for monitoring atmospheric water vapor and carbon dioxide, the two most dominant greenhouse gases. Recent advances in 2-μm laser technology paved the way for constructing state-of-the-art lidar transmitters for active remote sensing applications. In this paper, a new triple-pulsed 2-μm integrated path differential absorption lidar is presented. This lidar is capable of measuring either two species or single specie with two different weighting functions, simultaneously and independently. Development of this instrument is conducted at NASA Langley Research Center. Instrument scaling for projected future space missions will be discussed
International audienceA direct detection atmospheric differential absorption lidar, based on a high ...
International audienceA direct detection atmospheric differential absorption lidar, based on a high ...
A CO2 lidar double-pulse two-micron high-energy transmitter, tuned to on- and off-line absorption wa...
The two-micron wavelength is suitable for monitoring atmospheric water vapor and carbon dioxide, the...
For more than 15 years, NASA Langley Research Center (LaRC) has contributed in developing several 2-...
An advanced airborne triple-pulse 2-μm integrated path differential absorption (IPDA) lidar is under...
An advanced airborne triple-pulse 2-μm integrated path differential absorption (IPDA) lidar is under...
The 2-micron wavelength region is suitable for atmospheric carbon dioxide (CO2) measurements due to ...
The societal benefits of understanding climate change through identification of global carbon dioxid...
International audienceA direct detection atmospheric differential absorption lidar, based on a high ...
International audienceWe report on an integrated path Differential Absorption Lidar instrument based...
International audienceWe report on an integrated path Differential Absorption Lidar instrument based...
International audienceWe report on an integrated path Differential Absorption Lidar instrument based...
International audienceA direct detection atmospheric differential absorption lidar, based on a high ...
International audienceA direct detection atmospheric differential absorption lidar, based on a high ...
International audienceA direct detection atmospheric differential absorption lidar, based on a high ...
International audienceA direct detection atmospheric differential absorption lidar, based on a high ...
A CO2 lidar double-pulse two-micron high-energy transmitter, tuned to on- and off-line absorption wa...
The two-micron wavelength is suitable for monitoring atmospheric water vapor and carbon dioxide, the...
For more than 15 years, NASA Langley Research Center (LaRC) has contributed in developing several 2-...
An advanced airborne triple-pulse 2-μm integrated path differential absorption (IPDA) lidar is under...
An advanced airborne triple-pulse 2-μm integrated path differential absorption (IPDA) lidar is under...
The 2-micron wavelength region is suitable for atmospheric carbon dioxide (CO2) measurements due to ...
The societal benefits of understanding climate change through identification of global carbon dioxid...
International audienceA direct detection atmospheric differential absorption lidar, based on a high ...
International audienceWe report on an integrated path Differential Absorption Lidar instrument based...
International audienceWe report on an integrated path Differential Absorption Lidar instrument based...
International audienceWe report on an integrated path Differential Absorption Lidar instrument based...
International audienceA direct detection atmospheric differential absorption lidar, based on a high ...
International audienceA direct detection atmospheric differential absorption lidar, based on a high ...
International audienceA direct detection atmospheric differential absorption lidar, based on a high ...
International audienceA direct detection atmospheric differential absorption lidar, based on a high ...
A CO2 lidar double-pulse two-micron high-energy transmitter, tuned to on- and off-line absorption wa...