English

The Swift Gamma-Ray Burst Mission

Astrophysics 2010-03-19 v1

Abstract

The Swift mission, scheduled for launch in early 2004, is a multiwavelength observatory for gamma-ray burst (GRB) astronomy. It is the first-of-its-kind autonomous rapid-slewing satellite for transient astronomy and pioneers the way for future rapid-reaction and multiwavelength missions. It will be far more powerful than any previous GRB mission, observing more than 100 bursts per year and performing detailed X-ray and UV/optical afterglow observations spanning timescales from 1 minute to several days after the burst. The objectives are to determine the origin of GRBs; classify GRBs and search for new types; study the interaction of the ultra-relativistic outflows of GRBs with their surrounding medium; and use GRBs to study the early universe out to z>10. The mission is being developed by a NASA-led international collaboration. It will carry three instruments: a new-generation wide-field gamma-ray (15-150 keV) detector; a narrow-field X-ray telescope; and a narrow-field UV/optical telescope. Redshift determinations will be made for most bursts. In addition to the primary GRB science, the mission will perform a hard X-ray survey to a sensitivity of ~1 mCrab (~2x10^{-11} erg cm^{-2} s^{-1} in the 15-150 keV band), more than an order of magnitude better than HEAO A-4. A flexible data and operations system will allow rapid follow-up observations of all types of high-energy transients, with rapid data downlink and uplink available through the NASA TDRSS system. The mission is currently funded for 2 years of operations and the spacecraft will have a lifetime to orbital decay of ~8 years. [ABRIDGED]

Keywords

Cite

@article{arxiv.astro-ph/0405233,
  title  = {The Swift Gamma-Ray Burst Mission},
  author = {N. Gehrels and G Chincarini and P. Giommi and K. O. Mason and J. A. Nousek and A. A. Wells and N. E. White and S. D. Barthelmy and D. N. Burrows and L. R. Cominsky and K. C. Hurley and F. E. Marshall and P. Meszaros and P. W. A. Roming and Swift Science Team},
  journal= {arXiv preprint arXiv:astro-ph/0405233},
  year   = {2010}
}

Comments

38 pages, including 10 figures; accepted for publication in ApJ v611