Clues to the Nature of SN 2009ip II: The Continuing Photometric and Spectroscopic Evolution to 1000 Days
arXiv:1704.05868 · doi:10.1093/mnras/stx948
Abstract
The 2012 brightening of SN 2009ip was dominated by emission from the interaction of ejecta with the surrounding circumstellar material (CSM) produced by episodic mass loss from the progenitor, complicating the diagnosis of whether the underlying explosion was a true supernova or a nonterminal eruption of a massive star. In this paper, we contribute a time series of optical photometric and spectroscopic observations for SN 2009ip from 1 to 3 years after the 2012 outburst, collected at the Las Cumbres Observatory and the Keck Observatory. We find that the brightness of SN 2009ip continues to decline with no deviations from a linear slope of in the band, and demonstrate that this is similar to both observations and models of CSM-ejecta interaction. We show that the late-time spectra continue to be dominated by the signature features of CSM interaction, and that the large ratio of implies that the material remains optically thick to Balmer photons ("Case C" recombination). We combine our late-time photometry and spectra with early-time data for SN 2009ip and provide a comprehensive discussion that incorporates recently published models and observations for transient phenomena dominated by CSM-ejecta interaction, and conclude that the presence of broad H at early times remains among the best evidence that a terminal supernova has occurred. Finally, we compare our late-time spectra to those of Type IIn SNe and SN impostors at late phases and find that although SN 2009ip has some similarities with both types, it has more differences with late-time impostor spectra.
Accepted to MNRAS; 15 pages, 12 figures, 2 tables
References in corpus (16)
- The diversity of Type II supernova versus the similarity in their progenitors
- SN 2006tf: Precursor Eruptions and the Optically Thick Regime of Extremely Luminous Type IIn Supernovae
- The Near-Infrared Broad Emission Line Region of Active Galactic Nuclei -- I. The Observations
- Numerical simulations of super-luminous supernovae of type IIn
- Multi-epoch spectropolarimetry of SN 2009ip: direct evidence for aspherical circumstellar material
- Dead or Alive? Long-term evolution of SN 2015bh (SNhunt275)
- Models of interacting supernovae and their spectral diversity
- Endurance of SN 2005ip after a decade: X-rays, radio, and H-alpha like SN 1988Z require long-lived pre-supernova mass loss
- On the Nature of Type Ia-CSM Supernovae: Optical and Near-Infrared Spectra of SN 2012ca and SN 2013dn
- Interacting supernovae and supernova impostors. LSQ13zm: an outburst heralds the death of a massive star
- Massive stars dying alone: The extremely remote environment of SN 2009ip
- The Intermediate Luminosity Optical Transient SN 2010da: The Progenitor, Eruption and Aftermath of a Peculiar Supergiant High-mass X-ray Binary
- Interacting supernovae and supernova impostors. SN 2007sv: the major eruption of a massive star in UGC 5979
- SN 2009ip: Constraining the latest explosion properties by its late-phase light curve
- The supernova impostor PSN J09132750+7627410 and its progenitor
- Photometry and spectroscopy of SN 2015bh in the galaxy NGC 2770
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