SN 2009kn - the twin of the Type IIn supernova 1994W
arXiv:1205.0353 · doi:10.1111/j.1365-2966.2012.21224.x
Abstract
We present an optical and near-infrared photometric and spectroscopic study of supernova (SN) 2009kn spanning ~1.5 yr from the discovery. The optical spectra are dominated by the narrow (full width at half-maximum ~1000 km s^-1) Balmer lines distinctive of a Type IIn SN with P Cygni profiles. Contrarily, the photometric evolution resembles more that of a Type IIP SN with a large drop in luminosity at the end of the plateau phase. These characteristics are similar to those of SN 1994W, whose nature has been explained with two different models with different approaches. The well-sampled data set on SN 2009kn offers the possibility to test these models, in the case of both SN 2009kn and SN 1994W. We associate the narrow P Cygni lines with a swept-up shell composed of circumstellar matter and SN ejecta. The broad emission line wings, seen during the plateau phase, arise from internal electron scattering in this shell. The slope of the light curve after the post-plateau drop is fairly consistent with that expected from the radioactive decay of 56Co, suggesting an SN origin for SN 2009kn. Assuming radioactivity to be the main source powering the light curve of SN 2009kn in the tail phase, we infer an upper limit for 56Ni mass of 0.023 M_sun. This is significantly higher than that estimated for SN 1994W, which also showed a much steeper decline of the light curve after the post-plateau drop. We also observe late-time near-infrared emission which most likely arises from newly formed dust produced by SN 2009kn. As with SN 1994W, no broad lines are observed in the spectra of SN 2009kn, not even in the late-time tail phase.
21 pages, 19 figures. Minor changes in text and figures from v1. Published in MNRAS
References in corpus (11)
- Determining the Type, Redshift, and Age of a Supernova Spectrum
- SN 2005cs in M51 II. Complete Evolution in the Optical and the Near-Infrared
- Dust and the type II-plateau supernova 2004et
- A New Class of Luminous Transients and A First Census of Their Massive Stellar Progenitors
- SN 1994W: An Interacting Supernova or Two Interacting Shells?
- Optical and infrared observations of the Type IIP SN2002hh from day 3 to 397
- VLT detection of a red supergiant progenitor of the type IIP supernova 2008bk
- Ruling out a massive-assymptoic giant-branch star as the progenitor of supernova 2005cs
- A Spitzer Space Telescope study of SN 2002hh: an infrared echo from a Type IIP supernova
- Do the photometric colors of Type II-P Supernovae allow accurate determination of host galaxy extinction?
- Correcting second-order contamination in low-resolution spectra
Cited by in corpus (24)
- The electron-capture origin of supernova 2018zd
- Electron-capture supernovae exploding within their progenitor wind
- A population of highly energetic transient events in the centres of active galaxies
- Environments of interacting transients: Impostors and type IIn supernovae
- SN 2015bh: NGC 2770's 4th supernova or a luminous blue variable on its way to a Wolf-Rayet star?
- X-Ray and Radio Emission from the Luminous Supernova 2005kd
- Constraints on Type IIn Supernova Progenitor Outbursts from the Lick Observatory Supernova Search
- Defining Photometric Peculiar Type Ia Supernovae
- SN 2012aa - a transient between Type Ibc core-collapse and superluminous supernovae
- Core-collapse supernova progenitor constraints using the spatial distributions of massive stars in local galaxies
- Asiago Supernova classification program: blowing out the first two hundred candles
- An H-alpha survey of the host environments of 77 type IIn supernovae within z<0.02
- Multiple Peaks and a Long Precursor in the Type IIn Supernova 2021qqp: An Energetic Explosion in a Complex Circumstellar Environment
- CHIPS: Complete History of Interaction-Powered Supernovae
- SN 2021adxl: A luminous nearby interacting supernova in an extremely low metallicity environment
- Photometric and spectroscopic evolution of the peculiar Type IIn SN 2012ab
- SN 2017czd: A Rapidly Evolving Supernova from a Weak Explosion of a Type IIb Supernova Progenitor
- The Carnegie Supernova Project II. Observations of SN 2014ab possibly revealing a 2010jl-like SN IIn with pre-existing dust
- SN 2020pvb: a Type IIn-P supernova with a precursor outburst
- Probing the Circumstellar Environment of highly luminous type IIn SN ASASSN-14il
- Does energy of type IIP supernovae depends on stellar mass?
- Modeling the light curve of Type IIn-P SN 2005cl with red supergiant progenitors featuring pre-SN ourbursts
- A global look into the world of interacting supernovae
- Radiation-Driven Stellar Eruptions