The Experts below are selected from a list of 312 Experts worldwide ranked by ideXlab platform
Jason Soderblom - One of the best experts on this subject based on the ideXlab platform.
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Spherical Radiative Transfer in C++ (SRTC++): A Parallel Monte Carlo Radiative Transfer Model for Titan
Astronomical Journal, 2018Co-Authors: Jason Barnes, Shannon Mackenzie, Eliot Young, Laura Trouille, Sébastien Rodriguez, Thomas Cornet, Brian Jackson, Máté Ádámkovics, Christophe Sotin, Jason SoderblomAbstract:We present a new Computer program, SRTC++, to solve spatial problems associated with explorations of Saturn's moon Titan. The program implements a three-dimensional structure well-suited to addressing shortcomings arising from plane-parallel radiative transfer approaches. SRTC++ʼs design uses parallel processing in an object-oriented, compiled Computer Language (C++) leading to a flexible and fast architecture. We validate SRTC++ using analytical results, semianalytical radiative transfer expressions, and an existing Titan plane-parallel model. SRTC+ + complements existing approaches, addressing spatial problems like near-limb and near-terminator geometries, non-Lambertian surface phase functions (including specular reflections), and surface albedo nonuniformity.
Jason Barnes - One of the best experts on this subject based on the ideXlab platform.
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Spherical Radiative Transfer in C++ (SRTC++): A Parallel Monte Carlo Radiative Transfer Model for Titan
Astronomical Journal, 2018Co-Authors: Jason Barnes, Shannon Mackenzie, Eliot Young, Laura Trouille, Sébastien Rodriguez, Thomas Cornet, Brian Jackson, Máté Ádámkovics, Christophe Sotin, Jason SoderblomAbstract:We present a new Computer program, SRTC++, to solve spatial problems associated with explorations of Saturn's moon Titan. The program implements a three-dimensional structure well-suited to addressing shortcomings arising from plane-parallel radiative transfer approaches. SRTC++ʼs design uses parallel processing in an object-oriented, compiled Computer Language (C++) leading to a flexible and fast architecture. We validate SRTC++ using analytical results, semianalytical radiative transfer expressions, and an existing Titan plane-parallel model. SRTC+ + complements existing approaches, addressing spatial problems like near-limb and near-terminator geometries, non-Lambertian surface phase functions (including specular reflections), and surface albedo nonuniformity.
Thomas Cornet - One of the best experts on this subject based on the ideXlab platform.
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Spherical Radiative Transfer in C++ (SRTC++): A Parallel Monte Carlo Radiative Transfer Model for Titan
Astronomical Journal, 2018Co-Authors: Jason Barnes, Shannon Mackenzie, Eliot Young, Laura Trouille, Sébastien Rodriguez, Thomas Cornet, Brian Jackson, Máté Ádámkovics, Christophe Sotin, Jason SoderblomAbstract:We present a new Computer program, SRTC++, to solve spatial problems associated with explorations of Saturn's moon Titan. The program implements a three-dimensional structure well-suited to addressing shortcomings arising from plane-parallel radiative transfer approaches. SRTC++ʼs design uses parallel processing in an object-oriented, compiled Computer Language (C++) leading to a flexible and fast architecture. We validate SRTC++ using analytical results, semianalytical radiative transfer expressions, and an existing Titan plane-parallel model. SRTC+ + complements existing approaches, addressing spatial problems like near-limb and near-terminator geometries, non-Lambertian surface phase functions (including specular reflections), and surface albedo nonuniformity.
Christophe Sotin - One of the best experts on this subject based on the ideXlab platform.
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Spherical Radiative Transfer in C++ (SRTC++): A Parallel Monte Carlo Radiative Transfer Model for Titan
Astronomical Journal, 2018Co-Authors: Jason Barnes, Shannon Mackenzie, Eliot Young, Laura Trouille, Sébastien Rodriguez, Thomas Cornet, Brian Jackson, Máté Ádámkovics, Christophe Sotin, Jason SoderblomAbstract:We present a new Computer program, SRTC++, to solve spatial problems associated with explorations of Saturn's moon Titan. The program implements a three-dimensional structure well-suited to addressing shortcomings arising from plane-parallel radiative transfer approaches. SRTC++ʼs design uses parallel processing in an object-oriented, compiled Computer Language (C++) leading to a flexible and fast architecture. We validate SRTC++ using analytical results, semianalytical radiative transfer expressions, and an existing Titan plane-parallel model. SRTC+ + complements existing approaches, addressing spatial problems like near-limb and near-terminator geometries, non-Lambertian surface phase functions (including specular reflections), and surface albedo nonuniformity.
Máté Ádámkovics - One of the best experts on this subject based on the ideXlab platform.
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Spherical Radiative Transfer in C++ (SRTC++): A Parallel Monte Carlo Radiative Transfer Model for Titan
Astronomical Journal, 2018Co-Authors: Jason Barnes, Shannon Mackenzie, Eliot Young, Laura Trouille, Sébastien Rodriguez, Thomas Cornet, Brian Jackson, Máté Ádámkovics, Christophe Sotin, Jason SoderblomAbstract:We present a new Computer program, SRTC++, to solve spatial problems associated with explorations of Saturn's moon Titan. The program implements a three-dimensional structure well-suited to addressing shortcomings arising from plane-parallel radiative transfer approaches. SRTC++ʼs design uses parallel processing in an object-oriented, compiled Computer Language (C++) leading to a flexible and fast architecture. We validate SRTC++ using analytical results, semianalytical radiative transfer expressions, and an existing Titan plane-parallel model. SRTC+ + complements existing approaches, addressing spatial problems like near-limb and near-terminator geometries, non-Lambertian surface phase functions (including specular reflections), and surface albedo nonuniformity.