Fully-Coupled Simulation of Cosmic Reionization. I: Numerical Methods and Tests
arXiv:1306.0645 · doi:10.1088/0067-0049/216/1/16
Abstract
We describe an extension of the Enzo code to enable fully-coupled radiation hydrodynamical simulation of inhomogeneous reionization in large cosmological volumes with thousands to millions of point sources. We solve all dynamical, radiative transfer, thermal, and ionization processes self-consistently on the same mesh, as opposed to a postprocessing approach which coarse-grains the radiative transfer. We do, however, employ a simple subgrid model for star formation which we calibrate to observations. Radiation transport is done in the grey flux-limited diffusion (FLD) approximation, which is solved by implicit time integration split off from the gas energy and ionization equations, which are solved separately. This results in a faster and more robust scheme for cosmological applications compared to the earlier method. The FLD equation is solved using the hypre optimally scalable geometric multigrid solver from LLNL. By treating the ionizing radiation as a grid field as opposed to rays, our method is scalable with respect to the number of ionizing sources, limited only by the parallel scaling properties of the radiation solver. We test the speed and accuracy of our approach on a number of standard verification and validation tests. We show by direct comparison with Enzo's adaptive ray tracing method Moray that the well-known inability of FLD to cast a shadow behind opaque clouds has a minor effect on the evolution of ionized volume and mass fractions in a reionization simulation validation test. We illustrate an application of our method to the problem of inhomogeneous reionization in a 80 Mpc comoving box resolved with Eulerian grid cells and dark matter particles.
32 pages, 23 figures. ApJ Supp accepted. New title and substantial revisions re. v1
References in corpus (24)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Enzo: An Adaptive Mesh Refinement Code for Astrophysics
- Observational constraints on Cosmic Reionization
- The Birth of a Galaxy - III. Propelling reionisation with the faintest galaxies
- The observed ionization rate of the intergalactic medium and the ionizing emissivity at z >5: Evidence for a photon starved and extended epoch of reionization
- New Measurements of the Ionizing Ultraviolet Background over 2 < z < 5 and Implications for Hydrogen Reionization
- Search for TeV Gamma-ray Emission from GRB 100621A, an extremely bright GRB in X-rays, with H.E.S.S
- Radiative transfer simulations of cosmic reionization I: methodology and initial results
- Cosmological Radiative Transfer Codes Comparison Project I: The Static Density Field Tests
- Simulating cosmic reionization: How large a volume is large enough?
- Cosmic Reionization On Computers I. Design and Calibration of Simulations
- A radiative transfer scheme for cosmological reionization based on a local Eddington tensor
- Imprint of Inhomogeneous Hydrogen Reionization on the Temperature Distribution of the Intergalactic Medium
- TRAPHIC - Radiative Transfer for Smoothed Particle Hydrodynamics Simulations
- Cosmic Reionization On Computers II. Reionization History and Its Back Reaction on Early Galaxies
- Ionization Front Instabilities in Primordial H II Regions
- Population III Stars and Remnants in High Redshift Galaxies
- An implementation of radiative transfer in the cosmological simulation code GADGET
- Cosmological HII Bubble Growth During Reionization
- Direct Numerical Simulation of Reionization II: Recombinations, Clumping Factors, and the Photon Budget for Reionization
- Three-Dimensional Dynamical Instabilities in Galactic Ionization Fronts
- Multi-frequency, thermally coupled radiative transfer with TRAPHIC: Method and tests
- A New Moment Method for Continuum Radiative Transfer in Cosmological Reionization
- Simulations of galaxy formation with radiative transfer: Hydrogen reionization and radiative feedback
Cited by in corpus (25)
- A scheme for radiation pressure and photon diffusion with the M1 closure in RAMSES-RT
- Dark-ages reionization and galaxy formation simulation - III. Modelling galaxy formation and the epoch of reionization
- Self-Consistent Modeling of Reionization in Cosmological Hydrodynamical Simulations
- SCORCH I: The Galaxy-Halo Connection in the First Billion Years
- The Aurora radiation-hydrodynamical simulations of reionization: calibration and first results
- Spatially adaptive radiation-hydrodynamical simulations of galaxy formation during cosmological reionization
- Hydrogen Reionization in the Illustris universe
- Inferring the IGM thermal history during reionisation with the Lyman- forest power spectrum at redshift
- EMMA: an AMR cosmological simulation code with radiative transfer
- Lyman-alpha radiation hydrodynamics of galactic winds before cosmic reionization
- Inhomogeneous Reionization Models in Cosmological Hydrodynamical Simulations
- Large scale simulations of H and He reionization and heating driven by stars and more energetic sources
- A systematic study of the escape of LyC and Ly photons from star-forming, magnetized turbulent clouds
- AMBER: A Semi-numerical Abundance Matching Box for the Epoch of Reionization
- Cosmic Reionization On Computers III. The Clumping Factor
- Magneto-Hydrodynamical Effects on Nuclear Deflagration Fronts in Type Ia Supernovae
- Models of the Cosmological 21 cm Signal from the Epoch of Reionization Calibrated with Lyman-alpha and CMB Data
- Calibration of a star formation and feedback model for cosmological simulations with Enzo
- Modeling Reionization in a Bursty Universe
- SCORCH. III. Analytical Models of Reionization with Varying Clumping Factors
- Fully Coupled Simulation of Cosmic Reionization. III. Stochastic Early Reionization by the Smallest Galaxies
- Cosmic Reionization On Computers. Ultraviolet Continuum Slopes and Dust Opacities in High Redshift Galaxies
- On improving analytical models of cosmic reionization for matching numerical simulation
- A hybrid multi resolution scheme to efficiently model the structure of reionization on the largest scales
- Signature of the interaction between dark sectors in the reionization process