SN 2011hw: Helium-Rich Circumstellar Gas and the Luminous Blue Variable to Wolf-Rayet Transition in Supernova Progenitors
arXiv:1204.0043 · doi:10.1111/j.1365-2966.2012.21849.x
Abstract
We present optical photometry and spectroscopy of the peculiar Type IIn/Ibn supernova SN2011hw. Its light curve exhibits a slower decline rate than normal SNeIbc, with a peak absolute magnitude of -19.5 (unfiltered) and a secondary peak of -18.3 mag (R). Spectra of SN2011hw are unusual compared to normal SN types, most closely resembling the spectra of SNeIbn. We center our analysis on comparing SN 2011hw to the well-studied TypeIbn SN2006jc. While the two SNe have many important similarities, the differences are quite telling: compared to SN2006jc, SN2011hw has weaker HeI and CaII lines and relatively stronger H lines, its light curve has a higher luminosity and slower decline rate, and emission lines associated with the progenitor's CSM are narrower. One can reproduce the unusual continuum shape of SN2011hw with equal contributions of a 6000K blackbody and a spectrum of SN2006jc. We attribute this emission component and many other differences between the two SNe to extra opacity from a small amount of additional H in SN2011hw, analogous to the small H mass that makes SNeIIb differ from SNeIb. Slower speeds in the CSM and elevated H content suggest a connection between the progenitor of SN2011hw and the class of Ofpe/WN9 stars, which have been associated with LBVs in their hot quiescent phases between outbursts, and are H-poor - but not H-free like classical Wolf-Rayet (WR) stars. We conclude that the similarities and differences between SN2011hw and SN2006jc can be largely understood if their progenitors exploded at different points in the transitional evolution from an LBV to a WR star.
11 pages, 7 figures, submitted to MNRAS
References in corpus (19)
- Pulsational pair instability as an explanation for the most luminous supernovae
- A giant outburst two years before the core-collapse of a massive star
- Wave-Driven Mass Loss in the Last Year of Stellar Evolution: Setting the Stage for the Most Luminous Core-Collapse Supernovae
- SN 2006jc: A Wolf-Rayet Star Exploding in a Dense He-Rich Circumstellar Medium
- SN 2006tf: Precursor Eruptions and the Optically Thick Regime of Extremely Luminous Type IIn Supernovae
- Massive stars exploding in a He-rich circumstellar medium. I. Type Ibn (SN 2006jc-like) events
- How much H and He is "hidden" in SNe Ib/c? I. - low-mass objects
- A Survey of Local Group Galaxies Currently Forming Stars: III. A Search for Luminous Blue Variables and Other H-alpha Emission-Lined Stars
- A Massive Progenitor of the Luminous Type IIn Supernova 2010jl
- SN 1994W: An Interacting Supernova or Two Interacting Shells?
- Numerical models of collisions between core-collapse supernovae and circumstellar shells
- Massive stars exploding in a He-rich circumstellar medium. II. The transitional case of SN 2005la
- Swift and Chandra Detections of Supernova 2006jc: Evidence for Interaction of the Supernova Shock with a Circumstellar Shell
- Early Formation of Dust in the Ejecta of Type Ib SN 2006jc and Temperature and Mass of the Dust
- Supernova 1998S at 14 years Postmortem: Continuing Circumstellar Interaction and Dust Formation
- The Peculiar Type Ib Supernova 2006jc: A WCO Wolf-Rayet Star Explosion
- Properties of newly formed dust by SN2006jc based on near-to-mid infrared observation with AKARI
- Optical photometry and spectroscopy of the type Ibn supernova SN 2006jc until the onset of dust formation
- Near-Infrared observations of the type Ib Supernova SN2006jc: evidence of interactions with dust
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