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A mildly relativistic radio jet from the otherwise normal Type Ic Supernova 2007gr

Authors :
Paragi, Z.
Taylor, G. B.
Kouveliotou, C.
Granot, J.
Ramirez-Ruiz, E.
Bietenholz, M.
van der Horst, A. J.
Pidopryhora, Y.
van Langevelde, H. J.
Garrett, M. A.
Szomoru, A.
Argo, M.
Bourke, S.
Paczynski, B.
Source :
Nature 463, 516-518 (28 January 2010)
Publication Year :
2010

Abstract

The class of type Ic supernovae have drawn increasing attention since 1998 owing to their sparse association (only four so far) with long duration gamma-ray bursts. Although both phenomena originate from the core collapse of a massive star, supernovae emit mostly at optical wavelengths, whereas GRBs emit mostly in soft gamma-rays or hard X-rays. Though the GRB central engine generates ultra-relativistic jets, which beam the early emission into a narrow cone, no relativistic outflows have hitherto been found in type Ib/c supernovae explosions, despite theoretical expectations and searches. Here we report radio (interferometric) observations that reveal a mildly relativistic expansion in a nearby type Ic supernova, SN 2007gr. Using two observational epochs 60 days apart, we detect expansion of the source and establish a conservative lower limit for the average apparent expansion velocity of 0.6c. Independently, a second mildly relativistic supernova has been reported. Contrary to the radio data, optical observations of SN 2007gr indicate a typical type Ic supernova with ejecta velocities ~6000 km/s, much lower than in GRB-associated supernovae. We conclude that in SN 2007gr a small fraction of the ejecta produced a low-energy mildly relativistic bipolar radio jet, while the bulk of the ejecta were slower and, as shown by optical spectro-polarimetry, mildly aspherical.<br />Comment: Nature, 10 pages (including supplementary material), 2 figures

Details

Database :
arXiv
Journal :
Nature 463, 516-518 (28 January 2010)
Publication Type :
Report
Accession number :
edsarx.1001.5060
Document Type :
Working Paper
Full Text :
https://doi.org/10.1038/nature08713