NASA’s Orbiting Carbon Observatory missions require spectroscopic parameterization of the Oxygen A-Band absorption (757-775 nm) with unprecedented detail to meet the objective of delivering space-based column CO2 measurements with an accuracy of better than 1 ppm, and spectroscopic parameters with accuracies at the 0.1\% level. To achieve this it is necessary for line shape models to include deviations from the Voigt line shape, including the collisional effects of speed-dependence, line mixing (LM), and collision-induced absorption (CIA). LM and CIA have been difficult to quantify in FTIR and CRDS spectra which have been limited to lower pressure measurements. A photoacoustic spectrometer has been designed to study the pressure- dependence...
The oxygen A band is used for numerous atmospheric experiments, but spectral line parameters that su...
Molecular oxygen (O$_{2}$) has a well-known and uniform molar fraction within the Earth’s atmosphere...
Because of the constant mixing ratio of molecular oxygen (\chem{O_2}) within the Earth’s atmosphere,...
NASA’s Orbiting Carbon Observatory missions require spectroscopic parameterization of the Oxygen A-B...
NASA's Orbiting Carbon Observatory missions OCO-2 and OCO-3 require spectroscopic parameterization o...
NASA's Orbiting Carbon Observatory missions OCO-2 and OCO-3 require spectroscopic parameterization o...
Accurate spectroscopic models are required for remote sensing missions that use spectroscopic method...
Accurate spectroscopic models are required for remote sensing missions that use spectroscopic method...
The oxygen A-band (760 nm) is used in a number of remote sensing applications due to the precisely k...
Composition measurements from remote sensing platforms require knowledge of air mass to better than ...
The oxygen A-band (760 nm) is used in a number of remote sensing applications due to the precisely k...
Composition measurements from remote sensing platforms require knowledge of air mass to better than ...
Because of the constant mixing ratio of molecular oxygen (\chem{O_2}) within the Earth’s atmosphere,...
Molecular oxygen (O$_{2}$) has a well-known and uniform molar fraction within the Earth’s atmosphere...
We present high signal-to-noise ratio, mode-by-mode cavity ring-down spectroscopy (CRDS) line shape ...
The oxygen A band is used for numerous atmospheric experiments, but spectral line parameters that su...
Molecular oxygen (O$_{2}$) has a well-known and uniform molar fraction within the Earth’s atmosphere...
Because of the constant mixing ratio of molecular oxygen (\chem{O_2}) within the Earth’s atmosphere,...
NASA’s Orbiting Carbon Observatory missions require spectroscopic parameterization of the Oxygen A-B...
NASA's Orbiting Carbon Observatory missions OCO-2 and OCO-3 require spectroscopic parameterization o...
NASA's Orbiting Carbon Observatory missions OCO-2 and OCO-3 require spectroscopic parameterization o...
Accurate spectroscopic models are required for remote sensing missions that use spectroscopic method...
Accurate spectroscopic models are required for remote sensing missions that use spectroscopic method...
The oxygen A-band (760 nm) is used in a number of remote sensing applications due to the precisely k...
Composition measurements from remote sensing platforms require knowledge of air mass to better than ...
The oxygen A-band (760 nm) is used in a number of remote sensing applications due to the precisely k...
Composition measurements from remote sensing platforms require knowledge of air mass to better than ...
Because of the constant mixing ratio of molecular oxygen (\chem{O_2}) within the Earth’s atmosphere,...
Molecular oxygen (O$_{2}$) has a well-known and uniform molar fraction within the Earth’s atmosphere...
We present high signal-to-noise ratio, mode-by-mode cavity ring-down spectroscopy (CRDS) line shape ...
The oxygen A band is used for numerous atmospheric experiments, but spectral line parameters that su...
Molecular oxygen (O$_{2}$) has a well-known and uniform molar fraction within the Earth’s atmosphere...
Because of the constant mixing ratio of molecular oxygen (\chem{O_2}) within the Earth’s atmosphere,...