GRB 090417B and its Host Galaxy: A Step Towards an Understanding of Optically-Dark Gamma-Ray Bursts
arXiv:1005.1675 · doi:10.1088/0004-637X/717/1/223
Abstract
GRB 090417B was an unusually long burst with a T_90 duration of at least 2130 s and a multi-peaked light curve at energies of 15-150 keV. It was optically dark and has been associated with a bright star-forming galaxy at a redshift of 0.345 that is broadly similar to the Milky Way. This is one of the few cases where a host galaxy has been clearly identified for a dark gamma-ray burst and thus an ideal candidate for studying the origin of dark bursts. We find that the dark nature of GRB 090417B cannot be explained by high redshift, incomplete observations, or unusual physics in the production of the afterglow. Assuming the standard relativistic fireball model for the afterglow we find that the optical flux is at least 2.5 mag fainter than predicted by the X-ray flux. The Swift/XRT X -ray data are consistent with the afterglow being obscured by a dense, localized sheet of dust approximately 30-80 pc from the burst along the line of sight. Our results suggest that this dust sheet imparts an extinction of A_V >~ 12 mag, which is sufficient to explain the missing optical flux. GRB 090417B is an example of a gamma-ray burst that is dark due to the localized dust structure in its host galaxy.
Accepted for publication in ApJ
References in corpus (18)
- Long gamma-ray bursts and core-collapse supernovae have different environments
- The Galaxy Population Hosting Gamma-Ray Bursts
- UV star-formation rates of GRB host galaxies
- Paper II: Calibration of the Swift ultraviolet/optical telescope
- Swift Identification of Dark Gamma-Ray Bursts
- Mass Fall-back and Accretion in the Central Engine of Gamma-Ray Bursts
- The Host Galaxies of Swift Dark Gamma-Ray Bursts: Observational Constraints on Highly Obscured and Very High-Redshift GRBs
- On the Mechanism of Gamma-Ray Burst Afterglows
- Can the early X-ray afterglow of GRBs be explained by a contribution from the reverse shock?
- "Late prompt" emission in Gamma Ray Bursts?
- Accurate early positions for Swift GRBS: enhancing X-ray positions with UVOT astrometry
- A New Paradigm for Gamma Ray Bursts: Long Term Accretion Rate Modulation by an External Accretion Disk
- Prior Emission Model for X-ray Plateau Phase of Gamma-Ray Burst Afterglows
- Gamma-Ray Burst Selected High Redshift Galaxies: Comparison to Field Galaxy Populations to z~3
- GRB 070306: A Highly Extinguished Afterglow
- The extreme, red afterglow of GRB 060923A: Distance or dust?
- Optical, Infrared, and Ultraviolet Observations of the X-Ray Flash GRB 050416A
- Dust formation in massive stars and their explosive ends
Cited by in corpus (16)
- The Physics of Gamma-Ray Bursts and Relativistic Jets
- Discovery of the nearby long, soft GRB 100316D with an associated supernova
- The ultra-long Gamma-Ray Burst 111209A: the collapse of a blue supergiant?
- GRB 130925A: an ultra-long Gamma Ray Burst with a dust-echo afterglow, and implications for the origin of the ultra-long GRBs
- A Comparative Study of Long and Short GRBs. I. Overlapping Properties
- A High Signal-to-Noise Ratio Composite Spectrum of Gamma-ray Burst Afterglows
- Dust in the wind: the role of recent mass loss in long gamma-ray bursts
- Statistical study of gamma-ray bursts with jet break feature in multi-wavelength afterglow emissions
- Long GRBs are metallicity-biased tracers of star formation: evidence from host galaxies and redshift distribution
- GRB 051008: A long, spectrally-hard dust-obscured GRB in a Lyman-Break Galaxy at z ~ 2.8
- Testing Blandford-Znajek mechanism in black hole hyperaccretion flows for long-duration gamma-ray bursts
- Chandra and Hubble Space Telescope observations of dark gamma-ray bursts and their host galaxies
- The effect of X-ray dust-scattering on a bright burst from the magnetar 1E 1547.0-5408
- Expansion and Spectral Softening of the Dust Scattering Rings of GRB 221009A
- Accessing the Host Galaxies of Long Gamma-Ray Bursts with Next-Generation Telescopes
- Modelling extragalactic extinction through gamma-ray burst afterglows