Abstract: Properties of the reflection coefficient of a semi-infinite homogeneous plane-parallel layer are considered for low incidence and reflection angles. An approximate formula is proposed for the reflection coefficient that describes the azimuth reflection for arbitrary incidence and sighting angles. The numerical calculations confirm suitability of this formula for non-strong anisotropic phase function. A method to retrieve the phase function and single-scattering albedo that uses the measurements of the reflected radiation is proposed. The accuracy of this method is estimated using the numerical experiment.Note: Research direction:Mathematical problems and theory of numerical method
Abstract-We describe a simple and highly " efficient and accurate radiative transfer technique ...
International audienceAn analytic formulation is proposed to obtain both complex permittivity and th...
Measurements of the fraction of light reflected and transmitted through a parallel plate of dielectr...
Simple analytical methods are proposed for calculating the reflection function of a semi-infinite an...
Abstract: We study the accuracy of a number of simple approximate equations for the reflection chara...
The reflection and transmission of light from a slab containing a turbid medium provide a scattering...
A method is described for finding the optical properties (scattering, absorption, and scattering ani...
This paper presents a parametric study of the time-resolved hemispherical reflectance of a plane-par...
t. ns, nite f p us ren eris sul nce cted 1117 term 044 for field characteristics are discussed by va...
Ellipsometry is a powerful technique for the determination of complex refractive indices n=n+ik of t...
AbstractThis paper developed an analytic method to solve the inverse problem of reflection. The dire...
In this paper, we derive some explicit analytical solutions to the P3 equations for the slab geometr...
This paper presents a parametric study of the time-resolved hemispherical reflectance of a plane...
Basic tools to solve an inverse scattering problem for anisotropic media are developed. A transient ...
IEEE International Conference on Microwaves, Communications, Antennas and Electronic Systems, COMCAS...
Abstract-We describe a simple and highly " efficient and accurate radiative transfer technique ...
International audienceAn analytic formulation is proposed to obtain both complex permittivity and th...
Measurements of the fraction of light reflected and transmitted through a parallel plate of dielectr...
Simple analytical methods are proposed for calculating the reflection function of a semi-infinite an...
Abstract: We study the accuracy of a number of simple approximate equations for the reflection chara...
The reflection and transmission of light from a slab containing a turbid medium provide a scattering...
A method is described for finding the optical properties (scattering, absorption, and scattering ani...
This paper presents a parametric study of the time-resolved hemispherical reflectance of a plane-par...
t. ns, nite f p us ren eris sul nce cted 1117 term 044 for field characteristics are discussed by va...
Ellipsometry is a powerful technique for the determination of complex refractive indices n=n+ik of t...
AbstractThis paper developed an analytic method to solve the inverse problem of reflection. The dire...
In this paper, we derive some explicit analytical solutions to the P3 equations for the slab geometr...
This paper presents a parametric study of the time-resolved hemispherical reflectance of a plane...
Basic tools to solve an inverse scattering problem for anisotropic media are developed. A transient ...
IEEE International Conference on Microwaves, Communications, Antennas and Electronic Systems, COMCAS...
Abstract-We describe a simple and highly " efficient and accurate radiative transfer technique ...
International audienceAn analytic formulation is proposed to obtain both complex permittivity and th...
Measurements of the fraction of light reflected and transmitted through a parallel plate of dielectr...