Multi-frequency, thermally coupled radiative transfer with TRAPHIC: Method and tests
arXiv:1008.1071 · doi:10.1111/j.1365-2966.2010.18032.x
Abstract
We present an extension of TRAPHIC, the method for radiative transfer of ionising radiation in smoothed particle hydrodynamics simulations that we introduced in Pawlik & Schaye (2008). The new version keeps all advantages of the original implementation: photons are transported at the speed of light, in a photon-conserving manner, directly on the spatially adaptive, unstructured grid traced out by the particles, in a computation time that is independent of the number of radiation sources, and in parallel on distributed memory machines. We extend the method to include multiple frequencies, both hydrogen and helium, and to model the coupled evolution of the temperature and ionisation balance. We test our methods by performing a set of simulations of increasing complexity and including a small cosmological reionisation run. The results are in excellent agreement with exact solutions, where available, and also with results obtained with other codes if we make similar assumptions and account for differences in the atomic rates used. We use the new implementation to illustrate the differences between simulations that compute photoheating in the grey approximation and those that use multiple frequency bins. We show that close to ionising sources the grey approximation asymptotes to the multi-frequency result if photoheating rates are computed in the optically thin limit, but that the grey approximation breaks down everywhere if, as is often done, the optically thick limit is assumed.
24 pages, 13 figures. Accepted for publication in MNRAS. Revised version includes many clarifications and an improved presentation of the comparison of the grey approximation with the multi-frequency result
References in corpus (17)
- Observational constraints on Cosmic Reionization
- The morphology of HII regions during reionization
- HeII Reionization and its Effect on the IGM
- Radiative transfer simulations of cosmic reionization I: methodology and initial results
- Cosmological Radiative Transfer Codes Comparison Project I: The Static Density Field Tests
- A radiative transfer scheme for cosmological reionization based on a local Eddington tensor
- TRAPHIC - Radiative Transfer for Smoothed Particle Hydrodynamics Simulations
- iVINE - Ionization in the parallel tree/SPH code VINE: First results on the observed age-spread around O-stars
- Ionization Front Instabilities in Primordial H II Regions
- An implementation of radiative transfer in the cosmological simulation code GADGET
- Lyman-alpha radiative transfer during the Epoch of Reionization: contribution to 21-cm signal fluctuations
- SPHRAY: A Smoothed Particle Hydrodynamics Ray Tracer for Radiative Transfer
- A New Moment Method for Continuum Radiative Transfer in Cosmological Reionization
- CRASH2: colored packets and other updates
- The Diffuse Nature of Stromgren Spheres
- Transport on Adaptive Random Lattices
- Diffuse continuum transfer in H II regions