SPAMCART: a code for smoothed particle Monte Carlo radiative transfer
arXiv:1603.01223 · doi:10.1093/mnras/stw1568
Abstract
We present a code for generating synthetic SEDs and intensity maps from Smoothed Particle Hydrodynamics simulation snapshots. The code is based on the Lucy (1999) Monte Carlo Radiative Transfer method, i.e. it follows discrete luminosity packets, emitted from external and/or embedded sources, as they propagate through a density field, and then uses their trajectories to compute the radiative equilibrium temperature of the ambient dust. The density is not mapped onto a grid, and therefore the calculation is performed at exactly the same resolution as the hydrodynamics. We present two example calculations using this method. First, we demonstrate that the code strictly adheres to Kirchhoff's law of radiation. Second, we present synthetic intensity maps and spectra of an embedded protostellar multiple system. The algorithm uses data structures that are already constructed for other purposes in modern particle codes. It is therefore relatively simple to implement.
Accepted by MNRAS. 11 Pages, 11 figures
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Cited by in corpus (8)
- Theoretical ISM pressure and electron density diagnostics for local and high-redshift galaxies
- Monte Carlo Radiative Transfer
- Synthetic observations of star formation and the interstellar medium
- Radiation transport methods in star formation simulations
- Modelling of ionising feedback with Smoothed Particle Hydrodynamics and Monte Carlo Radiative Transfer on a Voronoi grid
- Appearance of Dusty Filaments at Different Viewing Angles
- Synthetic observations of protostellar multiple systems
- Numerical Methods for Simulating Star Formation