Discovery of the low-redshift optical afterglow of GRB 011121 and its progenitor supernova SN 2001ke

被引:143
作者
Garnavich, PM
Stanek, KZ
Wyrzykowski, L
Infante, L
Bendek, E
Bersier, D
Holland, ST
Jha, S
Matheson, T
Kirshner, RP
Krisciunas, K
Phillips, MM
Carlberg, RG
机构
[1] Univ Notre Dame, Dept Phys, Notre Dame, IN 46556 USA
[2] Harvard Smithsonian Ctr Astrophys, Cambridge, MA 02138 USA
[3] Univ Warsaw Observ, PL-00478 Warsaw, Poland
[4] Pontificia Univ Catolica Chile, Santiago 22, Chile
[5] Cerro Tololo Interamer Observ, Tucson, AZ 85719 USA
[6] Carnegie Inst Washington, Las Campanas Observ, La Serena, Chile
[7] Univ Toronto, Dept Astron, Toronto, ON M5S 3H8, Canada
关键词
gamma rays : bursts; supernovae : general; supernovae : individual (SN 2001ke);
D O I
10.1086/344785
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We present the discovery and follow-up observations of the afterglow of the gamma-ray burst GRB 011121 and its associated supernova SN 2001ke. Images were obtained with the Optical Gravitational Lensing Experiment 1.3 m telescope in BVRI passbands, starting 10.3 hr after the burst. The temporal analysis of our early data indicates a steep decay, independent of wavelength, with F-nu proportional to t(-1.72+/-0.05). There is no evidence for a break in the light curve earlier than 2.5 days after the burst. The spectral energy distribution determined from the early broadband photometry is a power law with Fnu proportional to nu(-0.66+/-0.13) after correcting for a large reddening. Spectra obtained with the Magellan 6.5 m Baade telescope reveal narrow emission lines from the host galaxy that provide a redshift of z = 0.362 +/- 0.001 to the GRB. We also present late R - and J-band observations of the afterglow similar to7-17 days after the burst. The late-time photometry shows a large deviation from the initial decline, and our data combined with Hubble Space Telescope photometry provide strong evidence for a supernova peaking about 12 rest-frame days after the GRB. The first spectrum ever obtained of a GRB supernova at cosmological distance revealed a blue continuum. SN 2001ke was more blue near maximum than SN 1998bw and faded more quickly, which demonstrates that a range of properties are possible in supernovae that generate GRBs. The blue color is consistent with a supernova interacting with circumstellar gas, and this progenitor wind is also evident in the optical afterglow. This is the best evidence to date that classical, long GRBs are generated by core-collapse supernovae.
引用
收藏
页码:924 / 932
页数:9
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