Constraining the near-IR background light from Population-III stars using high redshift gamma-ray sources
arXiv:1109.0592 · doi:10.1111/j.1365-2966.2011.20092.x
Abstract
The Fermi satellite has detected GeV emission from a number of gamma-ray bursts and active galactic nuclei at high redshift, z > 1.5. We examine the constraints that the detections of gamma rays from several of these sources place on the contribution of population-III stars to the extragalactic background light. Emission from these primordial stars, particularly redshifted Lyman-alpha emission, can interact with gamma rays to produce electron-positron pairs and create an optical depth to the propagation of gamma-ray emission, and the detection of emission above 10 GeV can therefore constrain the production of this background. We consider two initial mass functions for the early stars, and use derived SEDs for each to put upper limits on the star-formation rate density of massive early stars from redshifts 6 to 10. Our limits are complementary to those set on a high near-IR background flux by ground-based TeV-scale observations, and show that current data can limit star-formation in the late stages of reionization to less than 0.5 M_solar yr^-1 Mpc^-3. Our results also show that the total background flux from population-III stars must be considerably less than that from resolved galaxies at wavelengths below 1.5 microns.
13 pages, 7 figures, 1 table. Accepted to MNRAS. Updated to reflected accepted version, 1 figure added, minor edits made
References in corpus (16)
- UV Luminosity Functions at z~4, 5, and 6 from the HUDF and other Deep HST ACS Fields: Evolution and Star Formation History
- Subaru Deep Survey V. A Census of Lyman Break Galaxies at z=4 and 5 in the Subaru Deep Fields: Photometric Properties
- Very-High-Energy Gamma Rays from a Distant Quasar: How Transparent Is the Universe?
- The Evolution of Stellar Mass and the Implied Star Formation History
- New limits on the density of the extragalactic background light in the optical to the far-infrared from the spectra of all known TeV blazars
- The redshift and afterglow of the extremely energetic gamma-ray burst GRB 080916C
- Lyman-break galaxies at z~5 -I. First significant stellar mass assembly in galaxies that are not simply z~3 LBGs at higher redshift
- The missing metals problem. III How many metals are expelled from galaxies?
- The Resolved NIR Extragalactic Background
- The Resolved Near-Infrared Extragalactic Background
- Constraints on the Cosmic Near Infrared Background Excess from NICMOS Deep Field Observations
- Dark Matter Capture in the First Stars: a Power Source and Limit on Stellar Mass
- DIRBE Minus 2MASS: Confirming the CIRB in 40 New Regions at 2.2 and 3.5 Microns
- Evidence for strong evolution of the cosmic star formation density at high redshift
- Probing the 3.6 Micron CIRB with Spitzer in 3 DIRBE Dark Spots
- First stars and the extragalactic background light: How recent gamma-ray observations constrain the early universe
Cited by in corpus (18)
- The Imprint of The Extragalactic Background Light in the Gamma-Ray Spectra of Blazars
- A -ray determination of the Universe's star-formation history
- Extragalactic Background Light from Hierarchical Galaxy Formation: Gamma-ray Attenuation up to the Epoch of Cosmic Reionization and the First Stars
- Constraints on the Intergalactic Magnetic Field with Gamma-Ray Observations of Blazars
- New measurements of the cosmic infrared background fluctuations in deep Spitzer/IRAC survey data and their cosmological implications
- Detection of isolated population III stars with the James Webb Space Telescope
- New Fermi-LAT event reconstruction reveals more high-energy gamma rays from Gamma-ray bursts
- Reconstructing the γ-ray Photon Optical Depth of the Universe to z~4 from Multiwavelength Galaxy Survey Data
- Gamma-rays from Blazars and the Extragalactic Background Light
- Modeling the Extragalactic Background Light and the Cosmic Star Formation History
- The Cosmic Infrared Background Experiment (CIBER): The Wide-Field Imagers
- IACT observations of gamma-ray bursts: prospects for the Cherenkov Telescope Array
- Gamma-rays as probes of the Universe
- Probing the EBL evolution at high redshift using GRBs detected with the Fermi-LAT
- Seeking dark matter with -ray attenuation
- Probing the peak of the star formation rate density with the extragalactic background light
- Upper Bound on the First Star Formation History
- Ultra High Energy Neutrinos: Absorption, Thermal Effects and Signatures