Context. Probing the structure of complex astrophysical objects requires effective three-dimensional (3D) numerical simulation of the relevant radiative transfer (RT) processes. As with any numerical simulation code, the choice of an appropriate discretization is crucial. Adaptive grids with cuboidal cells such as octrees have proven very popular, however several recently introduced hydrodynamical and RT codes are based on a Voronoi tessellation of the spatial domain. Such an unstructured grid poses new challenges in laying down the rays (straight paths) needed in RT codes. Aims. We show that it is straightforward to implement accurate and efficient RT on 3D Voronoi grids. Methods. We present a method for computing straight paths between tw...
Context. Radiative transfer modelling of expanding stellar envelopes is an important task in their a...
Radiative transfer is a notoriously difficult and computationally demanding problem. Yet, it is an i...
Context. Radiative transfer modelling of expanding stellar envelopes is an important task in their a...
Context. Probing the structure of complex astrophysical objects requires effective three-dimensional...
Context. Probing the structure of complex astrophysical objects requires effective three-dimensional...
Context. Probing the structure of complex astrophysical objects requires effective three-dimensional...
Context. Probing the structure of complex astrophysical objects requires effective three-dimensional...
Three-dimensional radiative transfer calculations involve extensive amounts of computation. These ca...
Context. Continuum radiative-transfer simulations are necessary for the interpretation of observatio...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society....
Solving the radiative transfer problem is a common problematic to may fields in astrophysics. With ...
Context. Three-dimensional non-local thermodynamical equilibrium (NLTE) radiative transfer calculati...
We describe the addition of Lyα resonant line transfer to our dust continuum radiation transfer code...
The ionizing feedback of young massive stars is well known to influence the dynamics of the birth en...
We describe the addition of Lyα resonant line transfer to our dust continuum radiation transfer code...
Context. Radiative transfer modelling of expanding stellar envelopes is an important task in their a...
Radiative transfer is a notoriously difficult and computationally demanding problem. Yet, it is an i...
Context. Radiative transfer modelling of expanding stellar envelopes is an important task in their a...
Context. Probing the structure of complex astrophysical objects requires effective three-dimensional...
Context. Probing the structure of complex astrophysical objects requires effective three-dimensional...
Context. Probing the structure of complex astrophysical objects requires effective three-dimensional...
Context. Probing the structure of complex astrophysical objects requires effective three-dimensional...
Three-dimensional radiative transfer calculations involve extensive amounts of computation. These ca...
Context. Continuum radiative-transfer simulations are necessary for the interpretation of observatio...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society....
Solving the radiative transfer problem is a common problematic to may fields in astrophysics. With ...
Context. Three-dimensional non-local thermodynamical equilibrium (NLTE) radiative transfer calculati...
We describe the addition of Lyα resonant line transfer to our dust continuum radiation transfer code...
The ionizing feedback of young massive stars is well known to influence the dynamics of the birth en...
We describe the addition of Lyα resonant line transfer to our dust continuum radiation transfer code...
Context. Radiative transfer modelling of expanding stellar envelopes is an important task in their a...
Radiative transfer is a notoriously difficult and computationally demanding problem. Yet, it is an i...
Context. Radiative transfer modelling of expanding stellar envelopes is an important task in their a...