International audienceContext. Radiation controls the dynamics and energetics of many astrophysical environments. To capture the coupling between the radiation and matter, however, is often a physically complex and computationally expensive endeavor. Aims: We sought to develop a numerical tool to perform radiation-hydrodynamics simulations in various configurations at an affordable cost. Methods: We built upon the finite volume code MPI-AMRVAC to solve the equations of hydrodynamics on multi-dimensional adaptive meshes and introduce a new module to handle the coupling with radiation. A non-equilibrium, flux-limiting diffusion approximation was used to close the radiation momentum and energy equations. The time-dependent radiation energy e...
Context. Radiative transfer has a strong impact on the collapse and the fragmentation of prestellar ...
In this dissertation, we present three projects addressing the dynamical importance of radiation in ...
Aims. We present a new radiation hydrodynamics code called ARK-RT which uses a two-moment model with...
International audienceContext. Radiation controls the dynamics and energetics of many astrophysical ...
Context. Radiation controls the dynamics and energetics of many astrophysical environments. To captu...
Aims. The transport of energy through radiation is very important in many astrophysical phenomena. I...
Context. Radiative transfer plays a crucial role in the star formation process. Because of the high ...
Aims. The transport of energy through radiation is very important in many astrophysical ph...
Context. Radiative feedback plays a crucial role in the formation of massive stars. The implementati...
AbstractWe present an algorithm for solving the radiative transfer problem on massively parallel com...
Copyright © 2015 The Author Published by Oxford University Press on behalf of the Royal Astronomical...
Context. Radiative transfer has a strong impact on the collapse and the fragmentation of prestellar ...
Context. Radiative transfer has a strong impact on the collapse and the fragmentation of prestellar ...
In this dissertation, we present three projects addressing the dynamical importance of radiation in ...
Aims. We present a new radiation hydrodynamics code called ARK-RT which uses a two-moment model with...
International audienceContext. Radiation controls the dynamics and energetics of many astrophysical ...
Context. Radiation controls the dynamics and energetics of many astrophysical environments. To captu...
Aims. The transport of energy through radiation is very important in many astrophysical phenomena. I...
Context. Radiative transfer plays a crucial role in the star formation process. Because of the high ...
Aims. The transport of energy through radiation is very important in many astrophysical ph...
Context. Radiative feedback plays a crucial role in the formation of massive stars. The implementati...
AbstractWe present an algorithm for solving the radiative transfer problem on massively parallel com...
Copyright © 2015 The Author Published by Oxford University Press on behalf of the Royal Astronomical...
Context. Radiative transfer has a strong impact on the collapse and the fragmentation of prestellar ...
Context. Radiative transfer has a strong impact on the collapse and the fragmentation of prestellar ...
In this dissertation, we present three projects addressing the dynamical importance of radiation in ...
Aims. We present a new radiation hydrodynamics code called ARK-RT which uses a two-moment model with...