Cosmological Radiative Transfer Codes Comparison Project I: The Static Density Field Tests
arXiv:astro-ph/0603199 · doi:10.1111/j.1365-2966.2006.10775.x
Abstract
Radiative transfer simulations are now at the forefront of numerical astrophysics. They are becoming crucial for an increasing number of astrophysical and cosmological problems; at the same time their computational cost has come to the reach of currently available computational power. Further progress is retarded by the considerable number of different algorithms (including various flavours of ray-tracing and moment schemes) developed, which makes the selection of the most suitable technique for a given problem a non-trivial task. Assessing the validity ranges, accuracy and performances of these schemes is the main aim of this paper, for which we have compared 11 independent RT codes on 5 test problems: (0) basic physics, (1) isothermal H II region expansion and (2) H II region expansion with evolving temperature, (3) I-front trapping and shadowing by a dense clump, (4) multiple sources in a cosmological density field. The outputs of these tests have been compared and differences analyzed. The agreement between the various codes is satisfactory although not perfect. The main source of discrepancy appears to reside in the multi-frequency treatment approach, resulting in different thicknesses of the ionized-neutral transition regions and different temperature structure. The present results and tests represent the most complete benchmark available for the development of new codes and improvement of existing ones. To this aim all test inputs and outputs are made publicly available in digital form.
32 pages, 39 figures (all color), comments welcome
References in corpus (3)
Cited by in corpus (33)
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- Efficient Simulations of Early Structure Formation and Reionization
- Damped Lyman Alpha Systems in Galaxy Formation Simulations
- A comparison of chemistry and dust cloud formation in ultracool dwarf model atmospheres
- Simulating Cosmic Reionization at Large Scales II: the 21-cm Emission Features and Statistical Signals
- Inside-out or Outside-in: The topology of reionization in the photon-starved regime suggested by Lyman-alpha forest data
- Self-regulated reionization
- Driving Turbulence and Triggering Star Formation by Ionizing Radiation
- The nature and evolution of the highly ionized near-zones in the absorption spectra of z~6 quasars
- Possible evidence for an inverted temperature-density relation in the intergalactic medium from the flux distribution of the Lyman-alpha forest
- 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
- Simulation techniques for cosmological simulations
- 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
- Effect of the intergalactic environment on the observability of Ly-alpha emitters during reionization
- Mapping Neutral Hydrogen During Reionization with the Ly-alpha Emission from Quasar Ionization Fronts
- SPHRAY: A Smoothed Particle Hydrodynamics Ray Tracer for Radiative Transfer
- Time-evolution of ionization and heating around first stars and miniquasars
- Dark matter halo abundances, clustering and assembly histories at high redshift
- Reionisation scenarios and the temperature of the IGM
- Current models of the observable consequences of cosmic reionization and their detectability
- A New Moment Method for Continuum Radiative Transfer in Cosmological Reionization
- CRASH2: colored packets and other updates
- The Signature of Patchy Reionization in the Polarization Anisotropy of the CMB
- Photodissociation feedback of Population III stars \\on their neighbor prestellar cores
- Dependence of the Local Reionization History on Halo Mass and Environment: Did Virgo Reionize the Local Group?
- Formation Criteria and the Mass of Secondary Population III Stars
- Reconstructing the Thomson Optical Depth due to Patchy Reionization with 21-cm Fluctuation Maps
- Regulated star formation in forming disk galaxies under ultraviolet radiation background
- A WENO Algorithm of the Temperature and Ionization Profiles around a Point Source
- Simulating Cosmic Reionization