Solving the radiative transfer problem is a common problematic to may fields in astrophysics. With the increasing angular resolution of spatial or ground-based telescopes (VLTI, HST) but also with the next decade instruments (NGST, ALMA, ...), astrophysical objects reveal and will certainly reveal complex spatial structures. Consequently, it is necessary to develop numerical tools being able to solve the radiative transfer equation in three dimensions in order to model and interpret these observations. I present a 3D radiative transfer program, using a new method for the construction of an adaptive spatial grid, based on the Monte Claro method. With the help of this tools, one can solve the continuum radiative transfer problem (e...
Context. Radiative transfer modelling of expanding stellar envelopes is an important task in their a...
Context. Multi-level non-local thermodynamic equilibrium (NLTE) radiation transfer calculations have...
Aims. General 3D astrophysical atmospheres will have random velocity fields. We seek to combine the ...
Radiative transfer is introduced as one of the grand challenge problems in astrophysics due to its k...
3D continuum radiative transfer is one of the remaining grand challenge problems in computational as...
3D continuum radiative transfer is one of the remaining grand challenge problems in computational as...
Context.Higher resolution telescopes as well as 3D numerical simulations will require the developme...
Context. Continuum radiative-transfer simulations are necessary for the interpretation of observatio...
A revised and greatly improved version of the 3D continuum radiative transfer code MC3D is presented...
This contribution focuses on the current state-of-play in multi-dimensional continuum radiative tran...
Three-dimensional radiative transfer calculations involve extensive amounts of computation. These ca...
Higher resolution telescopes as well as 3D numerical simulations will require the development of det...
Context. Multi-level non-local thermodynamic equilibrium (NLTE) radiation transfer calculations have...
Context. Multi-level non-local thermodynamic equilibrium (NLTE) radiation transfer calculations have...
Context. Radiative transfer modelling of expanding stellar envelopes is an important task in their a...
Context. Radiative transfer modelling of expanding stellar envelopes is an important task in their a...
Context. Multi-level non-local thermodynamic equilibrium (NLTE) radiation transfer calculations have...
Aims. General 3D astrophysical atmospheres will have random velocity fields. We seek to combine the ...
Radiative transfer is introduced as one of the grand challenge problems in astrophysics due to its k...
3D continuum radiative transfer is one of the remaining grand challenge problems in computational as...
3D continuum radiative transfer is one of the remaining grand challenge problems in computational as...
Context.Higher resolution telescopes as well as 3D numerical simulations will require the developme...
Context. Continuum radiative-transfer simulations are necessary for the interpretation of observatio...
A revised and greatly improved version of the 3D continuum radiative transfer code MC3D is presented...
This contribution focuses on the current state-of-play in multi-dimensional continuum radiative tran...
Three-dimensional radiative transfer calculations involve extensive amounts of computation. These ca...
Higher resolution telescopes as well as 3D numerical simulations will require the development of det...
Context. Multi-level non-local thermodynamic equilibrium (NLTE) radiation transfer calculations have...
Context. Multi-level non-local thermodynamic equilibrium (NLTE) radiation transfer calculations have...
Context. Radiative transfer modelling of expanding stellar envelopes is an important task in their a...
Context. Radiative transfer modelling of expanding stellar envelopes is an important task in their a...
Context. Multi-level non-local thermodynamic equilibrium (NLTE) radiation transfer calculations have...
Aims. General 3D astrophysical atmospheres will have random velocity fields. We seek to combine the ...