Multiple-scattering effects can significantly impact radiative transfer calculations for remote sensing and directed-energy applications. This study describes the development and implementation of a fast-calculating two-stream-like multiple-scattering algorithm that captures azimuthal and elevation variations into the Air Force Institute of Technology Center for Directed Energy’s Laser Environmental Effects Definition and Reference (LEEDR) atmospheric characterization and radiative transfer code. LEEDR is a fast-calculating, first-principles, worldwide surface-to-100-km, atmospheric characterization package for the creation of vertical profiles of temperature, pressure, water vapor content, optical turbulence, atmospheric particulates, and ...
This technical memorandum documents the longwave radiation parameterization developed at the Climate...
Classical and quantum formulations are used to estimate Rayleigh scattering within lidar signals. Wi...
The Air Force Institute of Technology\u27s Center for Directed Energy developed the High Energy Lase...
The ability to quickly and accurately model actual atmospheric conditions is essential to remote sen...
This paper demonstrates the capability of the Laser Environmental Effects Definition and Reference (...
This study investigates the radiative transfer code, Laser Environmental Effects Definition and Refe...
This study investigates the radiative transfer code, Laser Environmental Effects Definition and Refe...
The atmospheric radiation flow is a complex dynamical process underpinned by interaction with partic...
Daytime spectral sky radiance, or sky brightness, is deceptively complex to predict accurately. The ...
The correct formulation for Rayleigh scattering using the classical approach [1] is used to analyze ...
In this study of atmospheric effects on Geiger Mode laser ranging and detection (LADAR), the paramet...
Radiative transfer models (RTMs) are of utmost importance for quantitative remote sensing, especiall...
Radiative transfer models (RTMs) are of utmost importance for quantitative remote sensing, especiall...
The ability to accurately describe the atmospheric conditions around us is not only important to the...
The fourth IPCC report claims that there are still major uncertainties in the contribution of aeroso...
This technical memorandum documents the longwave radiation parameterization developed at the Climate...
Classical and quantum formulations are used to estimate Rayleigh scattering within lidar signals. Wi...
The Air Force Institute of Technology\u27s Center for Directed Energy developed the High Energy Lase...
The ability to quickly and accurately model actual atmospheric conditions is essential to remote sen...
This paper demonstrates the capability of the Laser Environmental Effects Definition and Reference (...
This study investigates the radiative transfer code, Laser Environmental Effects Definition and Refe...
This study investigates the radiative transfer code, Laser Environmental Effects Definition and Refe...
The atmospheric radiation flow is a complex dynamical process underpinned by interaction with partic...
Daytime spectral sky radiance, or sky brightness, is deceptively complex to predict accurately. The ...
The correct formulation for Rayleigh scattering using the classical approach [1] is used to analyze ...
In this study of atmospheric effects on Geiger Mode laser ranging and detection (LADAR), the paramet...
Radiative transfer models (RTMs) are of utmost importance for quantitative remote sensing, especiall...
Radiative transfer models (RTMs) are of utmost importance for quantitative remote sensing, especiall...
The ability to accurately describe the atmospheric conditions around us is not only important to the...
The fourth IPCC report claims that there are still major uncertainties in the contribution of aeroso...
This technical memorandum documents the longwave radiation parameterization developed at the Climate...
Classical and quantum formulations are used to estimate Rayleigh scattering within lidar signals. Wi...
The Air Force Institute of Technology\u27s Center for Directed Energy developed the High Energy Lase...