The laser heterodyne radiometer (LHR) has the advantages of miniaturization, low cost, and high spectral-resolution as a ground-verification instrument for satellite observation of atmospheric trace-gas concentration. To verify the accuracy of LHR measurements, a new performance evaluation method is presented here, based on an ASE source and a CO2 absorption cell in the laboratory. Preliminary simulation analysis based on the system parameters of LHR is carried out for the performance analysis and data processing of this new combined test system. According to the simulation results, at wavelength deviation of fewer than 30 MHz, the retrieval error, which increases with bandwidth, can obtain an accuracy of 1 ppm within the bandwidth range of...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
We present column CO2 measurements taken by the passive Miniaturized Laser Heterodyne Radiometer (Mi...
We present the project of a 2U CubeSat format spaceborne multichannel laser heterodyne spectroradiom...
International audienceAn all-fiber coupled laser heterodyne radiometer (LHR), using a wideband tunab...
In a collaboration between NASA GSFC and GWU, a low-cost, surface instrument is being developed that...
Presented here is a sensitivity analysis for the miniaturized laser heterodyne radiometer (mini-LHR)...
Several experiments involving spectral scanning interferometers and gas filter correlation radiomete...
A fully transportable laser heterodyne radiometer (LHR), involving a flexible polycrystalline mid-in...
Laser Heterodyne Radiometry is a technique adapted from radio receiver technology has been used to m...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
We present column CO2 measurements taken by the passive Miniaturized Laser Heterodyne Radiometer (Mi...
We present the project of a 2U CubeSat format spaceborne multichannel laser heterodyne spectroradiom...
International audienceAn all-fiber coupled laser heterodyne radiometer (LHR), using a wideband tunab...
In a collaboration between NASA GSFC and GWU, a low-cost, surface instrument is being developed that...
Presented here is a sensitivity analysis for the miniaturized laser heterodyne radiometer (mini-LHR)...
Several experiments involving spectral scanning interferometers and gas filter correlation radiomete...
A fully transportable laser heterodyne radiometer (LHR), involving a flexible polycrystalline mid-in...
Laser Heterodyne Radiometry is a technique adapted from radio receiver technology has been used to m...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
International audienceSpace-based active sensing of CO2 concentration is a very promising technique ...
We present column CO2 measurements taken by the passive Miniaturized Laser Heterodyne Radiometer (Mi...
We present the project of a 2U CubeSat format spaceborne multichannel laser heterodyne spectroradiom...