On the significance of the excess number of strong MgII absorbers observed towards Gamma-ray bursts
arXiv:1301.0646 · doi:10.1088/0004-637X/766/1/23
Abstract
The number of strong (equivalent width > 1A) MgII absorbers observed towards Gamma-ray bursts (GRBs) has been found to be statistically larger than the number of strong absorbers towards quasi-stellar objects (QSOs). We formalize this "MgII problem" and present a detailed explanation of the statistical tools required to assess the significance of the discrepancy. We find the problem exists at the 4σ level for GRBs with high-resolution spectra. It has been suggested that the discrepancy can be resolved by the combination of a dust obscuration bias towards QSOs, and a strong gravitational lensing bias towards GRBs. We investigate one of the two most probable lensed GRBs that we presented in our previous work (GRB020405; Rapoport et al.) and find it not to be strongly gravitationally lensed, constraining the percentage of lensed GRBs to be < 35% (2σ). Dust obscuration of QSOs has been estimated to be a significant effect with dusty MgII systems removing ~20% of absorbed objects from flux-limited QSO samples. We find that if ~30% of the strong MgII systems towards QSOs are missing from the observed samples, then GRBs and QSOs would have comparable numbers of absorbers per unit redshift. Thus, gravitational lensing bias is likely to make only a modest contribution to solving the MgII problem. However, if the dust obscuration bias has been slightly underestimated, the MgII problem would no longer persist.
7 pages, 5 figures. Submitted to ApJ. After referee report revision
References in corpus (7)
- The line-of-sight towards GRB 030429 at z = 2.66: Probing the matter at stellar, galactic and intergalactic scales
- High-Redshift Starbursting Dwarf Galaxies Revealed by GRB Afterglows
- GRB 071003: Broadband Follow-up Observations of a Very Bright Gamma-Ray Burst in a Galactic Halo
- Three intervening galaxy absorbers towards GRB060418: faint and dusty?
- Strongly Variable z=1.48 FeII and MgII Absorption in the Spectra of z=4.05 GRB 060206
- Physics of the GRB 030328 afterglow and its environment
- Constraints on the relative sizes of intervening Mg II-absorbing clouds and quasar emitting regions
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- GRBs as Probes of the IGM