Supernova 2020wnt: An Atypical Superluminous Supernova with a Hidden Central Engine
arXiv:2212.00177 · doi:10.3847/1538-4357/acc6c3
Abstract
We present observations of a peculiar hydrogen- and helium-poor stripped-envelope (SE) supernova (SN) 2020wnt, primarily in the optical and near-infrared (near-IR). Its peak absolute bolometric magnitude of -20.9 mag and a rise time of 69~days are reminiscent of hydrogen-poor superluminous SNe (SLSNe~I), luminous transients potentially powered by spinning-down magnetars. Before the main peak, there is a brief peak lasting <10 days post-explosion, likely caused by interaction with circumstellar medium (CSM) ejected ~years before the SN explosion. The optical spectra near peak lack a hot continuum and OII absorptions, which are signs of heating from a central engine; they quantitatively resemble those of radioactivity-powered H/He-poor Type Ic SESNe. At ~1 year after peak, nebular spectra reveal a blue pseudo-continuum and narrow OI recombination lines associated with magnetar heating. Radio observations rule out strong CSM interactions as the dominant energy source at +266 days post peak. Near-IR observations at +200-300 day reveal carbon monoxide and dust formation, which causes a dramatic optical light curve dip. Pair-instability explosion models predict slow light curve and spectral features incompatible with observations. SN 2020wnt is best explained as a magnetar-powered core-collapse explosion of a 28 Msun pre-SN star. The explosion kinetic energy is significantly larger than the magnetar energy at peak, effectively concealing the magnetar-heated inner ejecta until well after peak. SN 2020wnt falls into a continuum between normal SNe Ic and SLSNe I and demonstrates that optical spectra at peak alone cannot rule out the presence of a central engine.
Submitted to ApJ
References in corpus (38)
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- The Supernova -- Gamma-Ray Burst Connection
- The Zwicky Transient Facility: Data Processing, Products, and Archive
- The Zwicky Transient Facility: Science Objectives
- Initial Performance of the NEOWISE Reactivation Mission
- Pulsational Pair-Instability Supernovae
- PyNeb: a new tool for analyzing emission lines. I. Code description and validation of results
- The type Ia supernova SNLS-03D3bb from a super-Chandrasekhar-mass white dwarf star
- unWISE: unblurred coadds of the WISE imaging
- SN 2006gy: An extremely luminous supernova in the galaxy NGC 1260
- The Spectroscopic Diversity of Type Ia Supernovae
- The magnetar model for Type I superluminous supernovae I: Bayesian analysis of the full multicolour light curve sample with MOSFiT
- SN 2005ap: A Most Brilliant Explosion
- Freshly Formed Dust in the Cassiopeia A Supernova Remnant as Revealed by the Spitzer Space Telescope
- Spectroscopy of superluminous supernova host galaxies. A preference of hydrogen-poor events for extreme emission line galaxies
- A stubbornly large mass of cold dust in the ejecta of Supernova 1987A
- Firefly (Fitting IteRativEly For Likelihood analYsis): a full spectral fitting code
- The Explosion of Helium Stars Evolved With Mass Loss
- Condensation of dust in the ejecta of type II-P supernovae
- The carbon-rich type Ic SN 2007gr: the photospheric phase
- Towards a better understanding of the evolution of Wolf-Rayet stars and Type Ib/Ic supernova progenitors
- Hydrogen-Poor Superluminous Supernovae from the Pan-STARRS1 Medium Deep Survey
- Superluminous supernova 2015bn in the nebular phase: evidence for the engine-powered explosion of a stripped massive star
- Fast evolving pair-instability supernova models: evolution, explosion, light curves
- On the early-time excess emission in hydrogen-poor superluminous supernovae
- Palomar Gattini-IR: Survey overview, data processing system, on-sky performance and first results
- Circumstellar interaction in supernovae in dense environments - an observational perspective
- Old supernova dust factory revealed at the Galactic center
- Superluminous supernovae: an explosive decade
- Luminous Supernovae: Unveiling a Population Between Superluminous and Normal Core-collapse Supernovae
- Pair-Instability Supernova Simulations: Progenitor Evolution, Explosion, and Light Curves
- Supernova 2017eaw: molecule and dust formation from infrared observations
- Carnegie Supernova Project-II: Near-infrared Spectroscopic Diversity of Type II Supernovae
- A Mid-infrared Study of Superluminous Supernovae
- SN 2017gci: a nearby Type I Superluminous Supernova with a bumpy tail
- The nature of PISN candidates: clues from nebular spectra
- Revealing Efficient Dust-Formation at Low Metallicity in Extragalactic Carbon-Rich Wolf-Rayet Binaries
- Synthetic spectra of energetic core-collapse supernovae and the early spectra of SN 2007bi and SN 1999as
Cited by in corpus (6)
- A Precursor Plateau and Pre-Maximum [O II] Emission in the Superluminous SN2019szu: A Pulsational Pair-Instability Candidate
- The enigmatic double-peaked stripped-envelope SN 2023aew
- SN 2020zbf: A fast-rising hydrogen-poor superluminous supernova with strong carbon lines
- Effects of nucleon-nucleon short-range correlation and symmetry energy on the evolution of newly born magnetars
- Gamma-ray signature of superluminous supernovae: Fermi-LAT GeV detection of SN 2017egm and evidence of a central engine
- The nearby He-rich superluminous supernova SN 2021bnw during photospheric phases