ASASSN-15no: The Supernova that plays hide-and-seek
arXiv:1801.08318 · doi:10.1093/mnras/sty166
Abstract
We report the results of our follow-up campaign of the peculiar supernova ASASSN-15no, based on optical data covering ~300 days of its evolution. Initially the spectra show a pure blackbody continuum. After few days, the HeI 5876 A transition appears with a P-Cygni profile and an expansion velocity of about 8700 km/s. Fifty days after maximum, the spectrum shows signs typically seen in interacting supernovae. A broad (FWHM~8000 km/s) Halpha becomes more prominent with time until ~150 days after maximum and quickly declines later on. At these phases Halpha starts to show an intermediate component, which together with the blue pseudo-continuum are clues that the ejecta begin to interact with the CSM. The spectra at the latest phases look very similar to the nebular spectra of stripped-envelope SNe. The early part (the first 40 days after maximum) of the bolometric curve, which peaks at a luminosity intermediate between normal and superluminous supernovae, is well reproduced by a model in which the energy budget is essentially coming from ejecta recombination and 56Ni decay. From the model we infer a mass of the ejecta Mej = 2.6 Msun; an initial radius of the photosphere R0 = 2.1 x 10^14 cm; and an explosion energy Eexpl = 0.8 x 10^51 erg. A possible scenario involves a massive and extended H-poor shell lost by the progenitor star a few years before explosion. The shell is hit, heated and accelerated by the supernova ejecta. The accelerated shell+ejecta rapidly dilutes, unveiling the unperturbed supernova spectrum below. The outer ejecta start to interact with a H-poor external CSM lost by the progenitor system about 9 -- 90 years before the explosion.
11 pages, 4 figures, in press to MNRAS
References in corpus (18)
- A 2.4% Determination of the Local Value of the Hubble Constant
- Formation of Double Neutron Star Systems
- A giant outburst two years before the core-collapse of a massive star
- Optical Spectra of 73 Stripped-Envelope Core-Collapse Supernovae
- SN 2004aw: Confirming Diversity of Type Ic Supernovae
- Setting UBVRI Photometric Zero-Points Using Sloan Digital Sky Survey ugriz Magnitudes
- SN 2005 gj: Evidence for LBV supernovae progenitors?
- The Search for Failed Supernovae with the Large Binocular Telescope: Constraints from 7 Years of Data
- A Core-Collapse Supernova Model for the Extremely Luminous Type Ic Supernova 2007bi: An Alternative to the Pair-Instability Supernova Model
- Supernova 2002ic: the collapse of a stripped-envelope, massive star in a dense medium ?
- Radii and Mass-loss Rates of Type IIb Supernova Progenitors
- iPTF16asu: A Luminous, Rapidly-Evolving, and High-Velocity Supernova
- On the Nature of Type Ia-CSM Supernovae: Optical and Near-Infrared Spectra of SN 2012ca and SN 2013dn
- Radiation-hydrodynamical modelling of underluminous type II plateau Supernovae
- The possible detection of a binary companion to a Type Ibn supernova progenitor
- Circumstellar Interaction Models for the Bolometric Light Curve of SN 2017egm
- Supernova Explosions inside Carbon-Oxygen Circumstellar Shells
- Supernova Classes and Subclasses
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- ASASSN-15nx: A luminous Type II supernova with a "perfect" linear decline
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