Optical Observations of the Type Ic Supernova 2007gr in NGC 1058 and Implications for the Properties of its Progenitor
arXiv:1406.2828 · doi:10.1088/0004-637X/790/2/120
Abstract
We present extensive optical observations of the normal Type Ic supernova (SN) 2007gr, spanning from about one week before maximum light to more than one year thereafter. The optical light and color curves of SN 2007gr are very similar to those of the broad-lined Type Ic SN 2002ap, but the spectra show remarkable differences. The optical spectra of SN 2007gr are characterized by unusually narrow lines, prominent carbon lines, and slow evolution of the line velocity after maximum light. The earliest spectrum (taken at t=-8 days) shows a possible signature of helium (He~I 5876 at a velocity of ~19,000 km s{-1}). Moreover, the larger intensity ratio of the [O I] 6300 and 6364 lines inferred from the early nebular spectra implies a lower opacity of the ejecta shortly after the explosion. These results indicate that SN 2007gr perhaps underwent a less energetic explosion of a smaller-mass Wolf-Rayet star (~ 8--9 Msun) in a binary system, as favored by an analysis of the progenitor environment through pre-explosion and post-explosion Hubble Space Telescope images. In the nebular spectra, asymmetric double-peaked profiles can be seen in the [O~I] 6300 and Mg~I] 4571 lines. We suggest that the two peaks are contributed by the blueshifted and rest-frame components. The similarity in velocity structure and the different evolution of the strength of the two components favor an aspherical explosion with the ejecta distributed in a torus or disk-like geometry, but inside the ejecta the O and Mg have different distributions.
14 pages, 12 figures, 5 tables. Accepted for publication in ApJ
References in corpus (14)
- Physical Properties of Wolf-Rayet Stars
- From Shock Breakout to Peak and Beyond: Extensive Panchromatic Observations of the Type Ib Supernova 2008D associated with Swift X-ray Transient 080109
- Secondary Maximum in the Near-Infrared Lightcurves of Type Ia Supernovae
- Asphericity in Supernova Explosions from Late-Time Spectroscopy
- Optical and Near-Infrared Observations of the Highly Reddened, Rapidly Expanding Type Ia Supernova 2006X in M100
- SN 2004aw: Confirming Diversity of Type Ic Supernovae
- Evidence for Two Distinct Populations of Type Ia Supernovae
- Progenitor Diagnostics for Stripped Core-Collapse Supernovae: Measured Metallicities at Explosion Sites
- Double-peaked Oxygen Lines Are not Rare in Nebular Spectra of Core-Collapse Supernovae
- The carbon-rich type Ic SN 2007gr: the photospheric phase
- Nebular Phase Observations of the Type Ib Supernova 2008D/X-ray Transient 080109: Side-Viewed Bipolar Explosion
- A mildly relativistic radio jet from the otherwise normal Type Ic Supernova 2007gr
- The birth place of the type Ic Supernova 2007gr
- Optical Spectropolarimetry and Asphericity of Type Ic SN 2007gr
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