We present a new three-dimensional radiative transfer (RT) code, RADAMESH, based on a ray-tracing, photon-conserving and adaptive (in space and time) scheme. RADAMESH uses a novel Monte Carlo approach to sample the radiation field within the computational domain on a “cell-by-cell ” basis. Thanks to this algorithm, the compu-tational efforts are now focused where actually needed, i.e. within the Ionization-fronts (I-fronts). This results in an increased accuracy level and, at the same time, a huge gain in computational speed with respect to a “classical ” Monte Carlo RT, especially when combined with an Adaptive Mesh Refinement (AMR) scheme. Among several new features, RADAMESH is able to adaptively refine the computational mesh in correspo...
Context. Continuum radiative-transfer simulations are necessary for the interpretation of observatio...
AbstractWe present an algorithm for solving the radiative transfer problem on massively parallel com...
We acknowledge support from STFC grant ST/M001296/1.We present the public Monte Carlo photoionizatio...
We present a new implementation of radiation hydrodynamics (RHD) in the adaptive mesh refinement (AM...
During the epoch when the first collapsed structures formed (6<z<50) our Universe went through...
We introduce arepo-rt, a novel radiation hydrodynamic (RHD) solver for the unstructured moving-mesh ...
We have explored reionisation of the universe using a radiative transfer (RT) code coupled to a part...
A numerical scheme for the solution of the three-dimensional, frequency- and time-dependent radiativ...
We present a new hybrid code for large volume, high resolution simulations of cosmic reionization, w...
International audienceContext. Radiative transfer has a strong impact on the collapse and the fragme...
We present an efficient method to generate large simulations of the epoch of reionization without th...
We compare the predictions of four different algorithms for the distribution of ionized gas during t...
We introduce the ‘Asymmetric Radiative Transfer In Shells Technique’ (ARTIST), a new method for phot...
We examine the epoch of hydrogen reionization using a new numerical method that allows us to self-co...
Context. Radiative transfer has a strong impact on the collapse and the fragmentation of prestellar ...
Context. Continuum radiative-transfer simulations are necessary for the interpretation of observatio...
AbstractWe present an algorithm for solving the radiative transfer problem on massively parallel com...
We acknowledge support from STFC grant ST/M001296/1.We present the public Monte Carlo photoionizatio...
We present a new implementation of radiation hydrodynamics (RHD) in the adaptive mesh refinement (AM...
During the epoch when the first collapsed structures formed (6<z<50) our Universe went through...
We introduce arepo-rt, a novel radiation hydrodynamic (RHD) solver for the unstructured moving-mesh ...
We have explored reionisation of the universe using a radiative transfer (RT) code coupled to a part...
A numerical scheme for the solution of the three-dimensional, frequency- and time-dependent radiativ...
We present a new hybrid code for large volume, high resolution simulations of cosmic reionization, w...
International audienceContext. Radiative transfer has a strong impact on the collapse and the fragme...
We present an efficient method to generate large simulations of the epoch of reionization without th...
We compare the predictions of four different algorithms for the distribution of ionized gas during t...
We introduce the ‘Asymmetric Radiative Transfer In Shells Technique’ (ARTIST), a new method for phot...
We examine the epoch of hydrogen reionization using a new numerical method that allows us to self-co...
Context. Radiative transfer has a strong impact on the collapse and the fragmentation of prestellar ...
Context. Continuum radiative-transfer simulations are necessary for the interpretation of observatio...
AbstractWe present an algorithm for solving the radiative transfer problem on massively parallel com...
We acknowledge support from STFC grant ST/M001296/1.We present the public Monte Carlo photoionizatio...