The First Billion Years project: gamma-ray bursts at z>5
arXiv:1408.2526 · doi:10.1093/mnras/stu2417
Abstract
Long gamma-ray burst's (LGRB's) association to the death of massive stars suggest they could be used to probe the cosmic star formation history (CSFH) with high accuracy, due to their high luminosities. We utilise cosmological simulations from the First Billion Years project to investigate the biases between the CSFH and the LGRB rate at z>5, assuming various different models and constraints on the progenitors of LGRBs. We populate LGRBs using a selection based on environmental properties and demonstrate that the LGRB rate should trace the CSFH to high redshifts. The measured LGRB rate suggests that LGRBs have opening angles of theta_jet=0.1 deg, although the degeneracy with the progenitor model cannot rule out an underlying bias. We demonstrate that proxies that relate the LGRB rate with global LGRB host properties do not reflect the underlying LGRB environment, and are in fact a result of the host galaxy's spatial properties, such that LGRBs can exist in galaxies of solar metallicity. However, we find a class of host galaxies that have low stellar mass and are metal-rich, and that their metallicity dispersions would not allow low-metallicity environments. Detection of hosts with this set of properties would directly reflect the progenitor's environment. We predict that 10% of LGRBs per year are associated with this set of galaxies that would have forbidden line emission that could be detected by instruments on the James Webb Space Telescope. Such a discovery would place strong constraints on the collapsar model and suggest other avenues to be investigated.
13 pages, 8 figures, 1 table, accepted for publication in MNRAS
References in corpus (26)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- Mass loss from hot massive stars
- A systematic variation of the stellar initial mass function in early-type galaxies
- An optical supernova associated with the X-ray flash XRF 060218
- An enigmatic long-lasting gamma-ray burst not accompanied by a bright supernova
- The Galaxy Population Hosting Gamma-Ray Bursts
- UV star-formation rates of GRB host galaxies
- z~7-10 Galaxies in the HUDF and GOODS fields, and their UV Luminosity Functions
- Population III stars: hidden or disappeared ?
- Star formation sustained by gas accretion
- The different progenitors of type Ib, Ic SNe, and of GRB
- Metal and molecule cooling in simulations of structure formation
- Metal and molecule cooling in simulations of structure formation
- Star Formation History up to z = 7.4: Implications for Gamma-Ray Bursts and the Cosmic Metallicity Evolution
- The redshift distribution of SWIFT Gamma-Ray Bursts: evidence for evolution
- Uncovering the Chemical Signature of the First Stars in the Universe
- IFU observations of the GRB 980425/SN 1998bw host galaxy: emission line ratios in GRB regions
- The Gamma Ray Burst Luminosity Function in the Light of the Swift 2-year Data
- The optically unbiased GRB host (TOUGH) survey. VI. Radio observations at z<1 and consistency with typical star-forming galaxies
- The optically unbiased GRB host (TOUGH) survey. V. VLT/X-shooter emission-line redshifts for Swift GRBs at z~2
- Evidence for strong evolution of the cosmic star formation density at high redshift
- The host of the SN-less GRB 060505 in high resolution
- The host galaxies of long-duration GRBs in a cosmological hierarchical scenario
- Where are the missing gamma ray burst redshifts?