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SwiftPanchromatic Observations of the Bright Gamma‐Ray Burst GRB 050525a

Authors :
A. J. Blustin
D. Band
S. Barthelmy
P. Boyd
M. Capalbi
S. T. Holland
F. E. Marshall
K. O. Mason
M. Perri
T. Poole
P. Roming
S. Rosen
P. Schady
M. Still
B. Zhang
L. Angelini
L. Barbier
A. Beardmore
A. Breeveld
D. N. Burrows
J. R. Cummings
J. Canizzo
S. Campana
M. M. Chester
G. Chincarini
L. R. Cominsky
A. Cucchiara
M. de Pasquale
E. E. Fenimore
N. Gehrels
P. Giommi
M. Goad
C. Gronwall
D. Grupe
J. E. Hill
D. Hinshaw
S. Hunsberger
K. C. Hurley
M. Ivanushkina
J. A. Kennea
H. A. Krimm
P. Kumar
W. Landsman
V. La Parola
C. B. Markwardt
K. McGowan
P. Meszaros
T. Mineo
A. Moretti
A. Morgan
J. Nousek
P. T. O’Brien
J. P. Osborne
K. Page
M. J. Page
D. M. Palmer
A. M. Parsons
J. Rhoads
P. Romano
T. Sakamoto
G. Sato
G. Tagliaferri
J. Tueller
A. A. Wells
N. E. White
Source :
The Astrophysical Journal. 637:901-913
Publication Year :
2006
Publisher :
American Astronomical Society, 2006.

Abstract

The bright gamma-ray burst GRB050525a has been detected with the Swift observatory, providing unique multiwavelength coverage from the very earliest phases of the burst. The X-ray and optical/UV afterglow decay light curves both exhibit a steeper slope ~0.15 days after the burst, indicative of a jet break. This jet break time combined with the total gamma-ray energy of the burst constrains the opening angle of the jet to be 3.2 degrees. We derive an empirical `time-lag' redshift from the BAT data of z_hat = 0.69 +/- 0.02, in good agreement with the spectroscopic redshift of 0.61. Prior to the jet break, the X-ray data can be modelled by a simple power law with index alpha = -1.2. However after 300 s the X-ray flux brightens by about 30% compared to the power-law fit. The optical/UV data have a more complex decay, with evidence of a rapidly falling reverse shock component that dominates in the first minute or so, giving way to a flatter forward shock component at later times. The multiwavelength X-ray/UV/Optical spectrum of the afterglow shows evidence for migration of the electron cooling frequency through the optical range within 25000 s. The measured temporal decay and spectral indices in the X-ray and optical/UV regimes compare favourably with the standard fireball model for Gamma-ray bursts assuming expansion into a constant density interstellar medium.<br />Comment: 31 pages, 7 figures, referee comments implemented, typo corrected in author list, accepted by ApJ

Details

ISSN :
15384357 and 0004637X
Volume :
637
Database :
OpenAIRE
Journal :
The Astrophysical Journal
Accession number :
edsair.doi.dedup.....11d7d1dbc4ed47f042855d91eda4d78f
Full Text :
https://doi.org/10.1086/498425