The Cosmic Near Infrared Background III: Fluctuations, Reionization and the Effects of Minimum Mass and Self-regulation
arXiv:1112.2064 · doi:10.1088/0004-637X/750/1/20
Abstract
Current observations suggest that the universe was reionized sometime before z~6. One way to observe this epoch of the universe is through the Near Infrared Background (NIRB), which contains information about galaxies which may be too faint to be observed individually. We calculate the angular power spectrum (C_l) of the NIRB fluctuations caused by the distribution of these galaxies. Assuming a complete subtraction of any post-reionization component, C_l will be dominated by galaxies responsible for completing reionization (e.g., z~6). The shape of C_l at high l is sensitive to the amount of non-linear bias of dark matter halos hosting galaxies. As the non-linear bias depends on the mass of these halos, we can use the shape of C_l to infer typical masses of dark matter halos responsible for completing reionization. We extend our previous study by using a higher-resolution N-body simulation, which can resolve halos down to 10^8 M_sun. We also include improved radiative transfer, which allows for the suppression of star formation in small-mass halos due to photo-ionization heating. As the non-linear bias enhances the dark-matter-halo power spectrum on small scales, we find that C_l is steeper for the case with a complete suppression of small sources or partial suppression of star formation in small halos (the minimum galaxy mass is M_min=10^9 M_sun in ionized regions and M_min=10^8 M_sun in neutral regions) than the case in which these small halos were unsuppressed. In all cases, we do not see a turn-over toward high l in the shape of l^2 C_l.
19 pages, 4 figures, Published in ApJ. Angular power spectrum with and without shot-noise are now plotted in figure 4, some notation changed
References in corpus (11)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- Three Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Polarization Analysis
- Self-regulated reionization
- AKARI observation of the fluctuation of the near-infrared background
- Constraints on the Cosmic Near Infrared Background Excess from NICMOS Deep Field Observations
- Evidence for a Z < 8 Origin of the Source Subtracted Near Infrared Background
- On the nature of the sources of the cosmic infrared background
- IR Background Anisotropies in Spitzer GOODS images and constraints on first galaxies
- Demonstrating the negligible contribution of optical ACS/HST galaxies to source-subtracted cosmic infrared background fluctuations in deep IRAC/Spitzer images
Cited by in corpus (25)
- Reionization and the Cosmic Dawn with the Square Kilometre Array
- Extragalactic Background Light from Hierarchical Galaxy Formation: Gamma-ray Attenuation up to the Epoch of Cosmic Reionization and the First Stars
- High Performance P3M N-body code: CUBEP3M
- Intensity Mapping across Cosmic Times with the Lyman-Alpha Line
- The Kinetic Sunyaev-Zel'dovich effect as a probe of the physics of cosmic reionization: the effect of self-regulated reionization
- Looking at cosmic near-infrared background radiation anisotropies
- The Near-IR Background Intensity and Anisotropies During The Epoch of Reionization
- Ultraviolet Luminosity Density of the Universe During the Epoch of Reionization
- The contribution of high redshift galaxies to the Near-Infrared Background
- Low-Resolution Spectrum of the Extragalactic Background Light with AKARI InfraRed Camera
- On the Physical Requirements for a Pre-Reionization Origin of the Unresolved Near-Infrared Background
- Accounting for Cosmic Variance in Studies of Gravitationally-Lensed High-Redshift Galaxies in the Hubble Frontier Field Clusters
- AKARI Observation of the Sub-degree Scale Fluctuation of the Near-infrared Background
- Reconstructing emission from pre-reionization sources with cosmic infrared background fluctuation measurements by the JWST
- Stars and Reionization: The Cross-Correlation of the 21cm Line and the Near Infrared Background
- Anisotropies of Cosmic Optical and Near-IR Background from China Space Station Telescope (CSST)
- The Dark Ages of the Universe and Hydrogen Reionization
- Probing reionization with the cross power spectrum of 21 cm and near-infrared radiation backgrounds
- The End of an Era - The Population III to Population II Transition and the Near Infrared Background
- The Contribution of Faint Galaxy Wings to Source-subtracted Near-infrared Background Fluctuations
- A Novel Approach to Constrain the Escape Fraction and Dust Content at High Redshift Using the Cosmic Infrared Background Fractional Anisotropy
- Multi-Component Decomposition of Cosmic Infrared Background Fluctuations
- Signatures of reionization feedback in the near-infrared background
- Detecting high- galaxies in the Near Infrared Background
- The near-infrared radiation background, gravitational wave background and star formation rate of Pop III and Pop II during cosmic reionization