Aims. This paper deals with multidimensional NLTE polarized radiative transfer in the case of two level atom in the absence of lower level polarization. We aim to develop an efficient and robust method for 2D cylindrical geometry and to apply it to various axi-symmetrical astrophysical objects such as rings, disks, rotating stars, and solar prominences. Methods. We review the methods of short characteristics and Jacobi iteration applied to axisymmetric geometry. Then we demonstrate how to use a reduced basis for polarized intensity and polarized source function to self-consistently solve the coupled equations of radiative transfer and statistical equilibrium for l...
A multidimensional radiative transfer code is presented, using the short characteristics scheme and...
Source functions and absorptions coefficients for polarized radiation in a given ansiotropic radiati...
The present investigation of three-dimensional radiative transfer accounts for polarization and mult...
Multidimensional radiative transfer is an essential ingredient of modern approach to modeling of ast...
Context. To interpret observations of astrophysical disks, it is essential to understand the formati...
In this paper, we derive in a coherent manner, starting from the basic equations of evolution of a q...
Context. The polarization signals produced by the scattering of anistropic radiation in strong reson...
Context. Polarized radiative transfer in the presence of scattering in spectral lines and/...
The adequate theoretical models of the NLTE radiative transfer are needed for interpretation of the ...
Accurate angular quadratures are crucial for the numerical solution of three-dimensional (3D) radiat...
The 3D transfer equations for polarized radiation is solved for several different model configuratio...
A method is proposed for the solution of NLTE radiative transfer equations in long cylinders with an...
The adequate theoretical models of the NLTE radiative transfer are needed for interpretation of the ...
While modelling astronomical objects in general, and dust envelopes of cool stars in particular, onl...
Context. Polarimetry is about to become a powerful tool for determining the atmospheric properties o...
A multidimensional radiative transfer code is presented, using the short characteristics scheme and...
Source functions and absorptions coefficients for polarized radiation in a given ansiotropic radiati...
The present investigation of three-dimensional radiative transfer accounts for polarization and mult...
Multidimensional radiative transfer is an essential ingredient of modern approach to modeling of ast...
Context. To interpret observations of astrophysical disks, it is essential to understand the formati...
In this paper, we derive in a coherent manner, starting from the basic equations of evolution of a q...
Context. The polarization signals produced by the scattering of anistropic radiation in strong reson...
Context. Polarized radiative transfer in the presence of scattering in spectral lines and/...
The adequate theoretical models of the NLTE radiative transfer are needed for interpretation of the ...
Accurate angular quadratures are crucial for the numerical solution of three-dimensional (3D) radiat...
The 3D transfer equations for polarized radiation is solved for several different model configuratio...
A method is proposed for the solution of NLTE radiative transfer equations in long cylinders with an...
The adequate theoretical models of the NLTE radiative transfer are needed for interpretation of the ...
While modelling astronomical objects in general, and dust envelopes of cool stars in particular, onl...
Context. Polarimetry is about to become a powerful tool for determining the atmospheric properties o...
A multidimensional radiative transfer code is presented, using the short characteristics scheme and...
Source functions and absorptions coefficients for polarized radiation in a given ansiotropic radiati...
The present investigation of three-dimensional radiative transfer accounts for polarization and mult...