Joint Institute for VLBI in Europe (JIVE), Postbus 2, 7990AA Dwingeloo, The Netherlands.
Nature. 2010 Jan 28;463(7280):516-8. doi: 10.1038/nature08713.
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 (GRBs). 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 approximately 6,000 km s(-1), 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 spectropolarimetry, mildly aspherical.
自 1998 年以来,Ic 型超新星因其与长持续时间伽马射线暴(GRB)的稀疏关联(迄今为止只有四个)而引起了越来越多的关注。尽管这两种现象都起源于大质量恒星的核心坍缩,但超新星主要在光学波长发射,而 GRB 主要在软伽马射线或硬 X 射线中发射。尽管 GRB 中心引擎产生了超相对论喷流,这些喷流将早期发射聚焦在一个狭窄的圆锥内,但迄今为止,在 Ib/c 型超新星爆炸中尚未发现相对论性外流,尽管存在理论预期和搜索。在这里,我们报告了无线电(干涉)观测结果,这些结果显示了附近的 Ic 型超新星 SN 2007gr 中存在轻度相对论性膨胀。使用相隔 60 天的两个观测时标,我们探测到了源的膨胀,并建立了平均视膨胀速度的保守下限为 0.6c。独立地,第二个轻度相对论性超新星也被报道了。与无线电数据相反,SN 2007gr 的光学观测表明,它是典型的 Ic 型超新星,其抛射物速度约为 6000km/s,远低于与 GRB 相关的超新星。我们的结论是,在 SN 2007gr 中,一小部分抛射物产生了低能量的轻度相对论性双极射电喷流,而大部分抛射物则较慢,并且如光学偏振光谱学所示,轻度各向异性。