In this paper we present the vector radiative transfer theory for a discrete random medium illuminated by a Gaussian beam. The analysis is based on a plane wave spectrum representation for a Gaussian beam and uses an approach developed previously for a discrete random medium illuminated by a plane electromagnetic wave. Specifically, we establish an integral representation for the coherent field, define an approximate coherent field that satisfies the differential equation fulfilled by the coherent field corresponding to a plane electromagnetic wave and matches the Gaussian beam at the interface of the particulate medium, and finally, derive the vector radiative transfer equation. For weakly focused Gaussian beams, the resulting equation is ...
International audienceRadiative transfer in a semi-transparent medium can be described by a spacetim...
Three-dimensional vector radiative transfer in a semi-infinite medium exposed to spatially varying, ...
In this paper, we present a numerical method for solving the radiative transfer equation that models...
In this paper, we present numerical methods for solving the phenomenological scalar radiative transf...
A vector radiative transfer equation with an additional source term typical of dense media is obtain...
In this paper, we revisit, with further enhancements and clarifications, the self-consistent first-p...
In this paper, the vector radiative transfer equation is derived by means of the vector integral Fol...
For a macroscopically plane-parallel discrete random medium, the boundary conditions for the specifi...
Pure and Applied Mathematics, Volume 74: Radiative Transfer on Discrete Spaces presents the geometri...
In this paper, we revisit, with further enhancements and clarifications, the self-consistent first-p...
For a macroscopically plane-parallel discrete random medium, the boundary conditions for the specifi...
The scalar time-dependent equation of radiative transfer is used to develop a theory of bounded beam...
The problem of backscattering of light by a discrete random medium illuminated by an obliquely incid...
The scalar time-dependent equation of radiative transfer is used to develop a theory of pulse beamwa...
The article gives an introduction to classical vector radiative transfer theory (RTT). It comprises ...
International audienceRadiative transfer in a semi-transparent medium can be described by a spacetim...
Three-dimensional vector radiative transfer in a semi-infinite medium exposed to spatially varying, ...
In this paper, we present a numerical method for solving the radiative transfer equation that models...
In this paper, we present numerical methods for solving the phenomenological scalar radiative transf...
A vector radiative transfer equation with an additional source term typical of dense media is obtain...
In this paper, we revisit, with further enhancements and clarifications, the self-consistent first-p...
In this paper, the vector radiative transfer equation is derived by means of the vector integral Fol...
For a macroscopically plane-parallel discrete random medium, the boundary conditions for the specifi...
Pure and Applied Mathematics, Volume 74: Radiative Transfer on Discrete Spaces presents the geometri...
In this paper, we revisit, with further enhancements and clarifications, the self-consistent first-p...
For a macroscopically plane-parallel discrete random medium, the boundary conditions for the specifi...
The scalar time-dependent equation of radiative transfer is used to develop a theory of bounded beam...
The problem of backscattering of light by a discrete random medium illuminated by an obliquely incid...
The scalar time-dependent equation of radiative transfer is used to develop a theory of pulse beamwa...
The article gives an introduction to classical vector radiative transfer theory (RTT). It comprises ...
International audienceRadiative transfer in a semi-transparent medium can be described by a spacetim...
Three-dimensional vector radiative transfer in a semi-infinite medium exposed to spatially varying, ...
In this paper, we present a numerical method for solving the radiative transfer equation that models...