Context. Thermal dust emission carries information on physical conditions and dust properties in many astronomical sources. Because observations represent a sum of emission along the line of sight, their interpretation often requires radiative transfer (RT) modelling. Aims. We describe a new RT program, SOC, for computations of dust emission, and examine its performance in simulations of interstellar clouds with external and internal heating. Methods. SOC implements the Monte Carlo RT method as a parallel program for shared-memory computers. It can be used to study dust extinction, scattering, and emission. We tested SOC with realistic cloud models and examined the convergence and noise of the dust-temperature estimates and of the resulting...
Context. The radiative transport of photons through arbitrary three-dimensional (3D) structures of d...
Context. Interstellar dust absorbs stellar light very efficiently, thus shaping the energy output of...
We present a Monte Carlo (MC) radiative transfer code for complex three dimensional dust distributio...
Context. Thermal dust emission carries information on physical conditions and dust properties in man...
Context. Thermal emission by stochastically heated dust grains (SHGs) plays an important role in the...
When calculating the infrared spectral energy distributions (SEDs) of galaxies in radiation-transfer...
Context. Thermal emission by stochastically heated dust grains (SHGs) plays an important role in the...
In this paper and a companion paper we present the DIRTY model, a Monte Carlo radiative transfer cod...
We present an updated version of SKIRT, a 3D Monte Carlo radiative transfer code developed to simula...
In this paper and a companion paper we present the DIRTY model, a Monte Carlo radiative transfer cod...
We combine a Monte Carlo radiative transfer code with an SPH code, so that - assuming thermal equil...
Context. The radiative transport of photons through arbitrary three-dimensional (3D) structures of d...
Context. Interstellar dust absorbs stellar light very efficiently, thus shaping the energy output of...
We present a Monte Carlo (MC) radiative transfer code for complex three dimensional dust distributio...
Context. Thermal dust emission carries information on physical conditions and dust properties in man...
Context. Thermal emission by stochastically heated dust grains (SHGs) plays an important role in the...
When calculating the infrared spectral energy distributions (SEDs) of galaxies in radiation-transfer...
Context. Thermal emission by stochastically heated dust grains (SHGs) plays an important role in the...
In this paper and a companion paper we present the DIRTY model, a Monte Carlo radiative transfer cod...
We present an updated version of SKIRT, a 3D Monte Carlo radiative transfer code developed to simula...
In this paper and a companion paper we present the DIRTY model, a Monte Carlo radiative transfer cod...
We combine a Monte Carlo radiative transfer code with an SPH code, so that - assuming thermal equil...
Context. The radiative transport of photons through arbitrary three-dimensional (3D) structures of d...
Context. Interstellar dust absorbs stellar light very efficiently, thus shaping the energy output of...
We present a Monte Carlo (MC) radiative transfer code for complex three dimensional dust distributio...