We present a novel framework to self-consistently model the effects of radiation fields, dust physics, and molecular chemistry (H2) in the interstellar medium (ISM) of galaxies. The model combines a state-of-the-art radiation hydrodynamics module with a H and He non-equilibrium thermochemistry module that accounts for H2 coupled to an empirical dust formation and destruction model, all integrated into the new stellar feedback framework SMUGGLE. We test this model on high-resolution isolated Milky-Way (MW) simulations. We show that the effect of radiation feedback on galactic star formation rates is quite modest in low gas surface density galaxies like the MW. The multiphase structure of the ISM, however, is highly dependent on the strengt...
International audienceIn this study, we present a suite of high-resolution numerical simulations of ...
We investigate improved, more physical methods for modelling key processes in galaxy formation that ...
In this study, we present a suite of high-resolution numerical simulations of an isolated galaxy to ...
We present a novel framework to self-consistently model the effects of radiation fields, dust physic...
Aims: We present and test chemical models for three-dimensional hydrodynamical simulations of galaxi...
An accurate treatment of the multiphase interstellar medium (ISM) in hydrodynamic galaxy simulations...
Interstellar chemistry is important for galaxy formation, as it determines the rate at which gas can...
An accurate treatment of the multiphase interstellar medium (ISM) in hydrody-namic galaxy simulation...
We present models of photometric evolution of galaxies in which the effects of a dusty interstellar ...
We present models of photometric evolution of galaxies in which the effects of a dusty interstellar ...
We present a self-consistent prediction of the interstellar radiation field (ISRF), from the extreme...
International audienceBy using a novel interface between the modern smoothed particle hydrodynamics ...
We develop and implement numerical methods for including stellar feedback in galaxy-scale numerical ...
We extend the non-equilibrium model for the chemical and thermal evolution of diffuse interstellar g...
We present an efficient heating/cooling method coupled with chemistry and ultraviolet (UV) radiative...
International audienceIn this study, we present a suite of high-resolution numerical simulations of ...
We investigate improved, more physical methods for modelling key processes in galaxy formation that ...
In this study, we present a suite of high-resolution numerical simulations of an isolated galaxy to ...
We present a novel framework to self-consistently model the effects of radiation fields, dust physic...
Aims: We present and test chemical models for three-dimensional hydrodynamical simulations of galaxi...
An accurate treatment of the multiphase interstellar medium (ISM) in hydrodynamic galaxy simulations...
Interstellar chemistry is important for galaxy formation, as it determines the rate at which gas can...
An accurate treatment of the multiphase interstellar medium (ISM) in hydrody-namic galaxy simulation...
We present models of photometric evolution of galaxies in which the effects of a dusty interstellar ...
We present models of photometric evolution of galaxies in which the effects of a dusty interstellar ...
We present a self-consistent prediction of the interstellar radiation field (ISRF), from the extreme...
International audienceBy using a novel interface between the modern smoothed particle hydrodynamics ...
We develop and implement numerical methods for including stellar feedback in galaxy-scale numerical ...
We extend the non-equilibrium model for the chemical and thermal evolution of diffuse interstellar g...
We present an efficient heating/cooling method coupled with chemistry and ultraviolet (UV) radiative...
International audienceIn this study, we present a suite of high-resolution numerical simulations of ...
We investigate improved, more physical methods for modelling key processes in galaxy formation that ...
In this study, we present a suite of high-resolution numerical simulations of an isolated galaxy to ...