A physically motivated classification of stripped-envelope supernovae
arXiv:1704.06635 · doi:10.1093/mnras/stx980
Abstract
The classification of stripped-envelope supernovae (SE-SNe) is revisited using modern data-sets. Spectra are analysed using an empirical method to "blindly" categorise SNe according to spectral feature strength and appearance. This method makes a clear distinction between SNe that are He-rich (IIb/Ib) and He-poor (Ic) and further analysis is performed on each subgroup. For He-rich SNe the presence of H becomes the focus. The strength, velocity, and ratio between absorption and emission of H is measured, along with additional analysis of He I lines, in order to categorise the SNe. The He-poor SNe are ordered according to the number of absorption features present in the spectra, which is a measure of the degree of line blending. The kinetic energy per unit mass is strongly affected by mass at high velocity and such situations principally occur when the outer density profile of the ejecta is shallow, leading to the blending of lines. Using the results, the existing SE-SN taxonomic scheme is adapted. He-rich SNe are split into four groups, IIb, IIb(I), Ib(II), and Ib, which represent H-rich to H-poor SNe. The SNe Ic category of broad-lined Ic (Ic-BL) is abandoned in favour of quantifying the line blending via before peak. To better reflect the physical parameters of the explosions, the velocity of Si II at peak and the half-luminosity decay time are included to give SNe Ic a designation of Ic-.
Accepted for publication in MNRAS
References in corpus (24)
- Physical Properties of Wolf-Rayet Stars
- An optical supernova associated with the X-ray flash XRF 060218
- Determining the Type, Redshift, and Age of a Supernova Spectrum
- A neutron-star-driven X-ray flash associated with supernova SN 2006aj
- From Shock Breakout to Peak and Beyond: Extensive Panchromatic Observations of the Type Ib Supernova 2008D associated with Swift X-ray Transient 080109
- The metamorphosis of Supernova SN2008D/XRF080109: a link between Supernovae and GRBs/Hypernovae
- Asphericity in Supernova Explosions from Late-Time Spectroscopy
- Early-Time Photometry and Spectroscopy of the Fast Evolving SN 2006AJ Associated with GRB 060218
- Optical Spectra of 73 Stripped-Envelope Core-Collapse Supernovae
- SN 2004aw: Confirming Diversity of Type Ic Supernovae
- Late-time spectral line formation in Type IIb supernovae, with application to SN 1993J, SN 2008ax, and SN 2011dh
- Supernova 2006aj and the associated X-Ray Flash 060218
- The type IIb SN 2008ax: spectral and light curve evolution
- ESC Supernova spectroscopy of non-ESC targets
- The properties of the "standard" type Ic supernova 1994I from spectral models
- Double-peaked Oxygen Lines Are not Rare in Nebular Spectra of Core-Collapse Supernovae
- Evolutionary Models for Type Ib/c Supernova Progenitors
- SN 2013df, a double-peaked IIb supernova from a compact progenitor and an extended H envelope
- Diversity of GRB energetics vs. SN homogeneity: supernova 2013cq associated with the gamma-ray burst 130427A
- Nebular Phase Observations of the Type Ib Supernova 2008D/X-ray Transient 080109: Side-Viewed Bipolar Explosion
- Supernova 2010as: the Lowest-Velocity Member of a Family of Flat-Velocity Type IIb Supernovae
- Photometric and spectroscopic observations, and abundance tomography modelling of the type Ia supernova SN 2014J located in M82
- Optical observations of the fast declining type Ib supernova iPTF13bvn
- Hydrogen in Type Ic Supernovae?
Cited by in corpus (42)
- The magnetar model for Type I superluminous supernovae I: Bayesian analysis of the full multicolour light curve sample with MOSFiT
- The Carnegie Supernova Project I: analysis of stripped-envelope supernova light curves
- Investigating the properties of stripped-envelope supernovae, what are the implications for their progenitors?
- Analysis of broad-lined Type Ic supernovae from the (intermediate) Palomar Transient Factory
- GRB 161219B-SN 2016jca: a powerful stellar collapse
- From core collapse to superluminous: The rates of massive stellar explosions from the Palomar Transient Factory
- The Automated Photometry Of Transients (AutoPhOT) pipeline
- The Carnegie Supernova Project I: photometry data release of low-redshift stripped-envelope supernovae
- SN 2016coi/ASASSN-16fp: An example of residual helium in a type Ic supernova?
- SN 2017dio: a type-Ic supernova exploding in a hydrogen-rich circumstellar medium
- Observations of SN 2017ein Reveal Shock Breakout Emission and A Massive Progenitor Star for a Type Ic Supernova
- Optimal Classification and Outlier Detection for Stripped-Envelope Core-Collapse Supernovae
- Oxygen and helium in stripped-envelope supernovae
- Type Ib/Ic supernovae: effect of nickel mixing on the early-time color evolution and implications for the progenitors
- Photometric, polarimetric, and spectroscopic studies of the luminous, slow-decaying Type Ib SN 2012au
- SN 2018gjx reveals that some SNe Ibn are SNe IIb exploding in dense circumstellar material
- Less than 1% of Core-Collapse Supernovae in the local universe occur in elliptical galaxies
- The rise and fall of an extraordinary Ca-rich transient -- The discovery of ATLAS19dqr/SN 2019bkc
- Average opacity calculation for core-collapse supernovae
- The origin of the H-like structure in nebular spectra of type IIb supernovae
- Type Ic Supernova of a 22 Progenitor
- Oxygen and calcium nebular emission line relationships in core-collapse supernovae and Ca-rich transients
- The Carnegie Supernova Project-I. Spectroscopic analysis of stripped-envelope supernovae
- SN 2020bio: A Double-peaked, H-poor Type IIb Supernova with Evidence of Circumstellar Interaction
- How much H and He is "hidden" in SNe Ib/c? -- II. Intermediate-mass objects: a 22 M progenitor case study
- Core-collapse supernova subtypes in luminous infrared galaxies
- Characterizing the Rapid Hydrogen Disappearance in SN2022crv: Evidence of a Continuum between Type Ib and IIb Supernova Properties
- Observations and Spectral Modelling of the Narrow-Lined Type Ic SN 2017ein
- The Carnegie Supernova Project-I. Optical spectroscopy of stripped-envelope supernovae
- PTF11rka: an interacting supernova at the crossroads of stripped-envelope and H-poor super-luminous stellar core collapses
- Transitional events in the spectrophotometric regime between stripped envelope and superluminous supernovae
- SN 2020cpg: an energetic link between type IIb and Ib supernovae
- SN 2019odp: A Massive Oxygen-Rich Type Ib Supernova
- Optical and spectral observations and hydrodynamic modelling of Type IIb Supernova 2017gpn
- Fast and Not-so-Furious: Case Study of the Fast and Faint Type IIb SN 2021bxu
- Exploring GRBs and supernovae connection: does a superluminous hypernova population exist?
- Characterization of Supernovae Based on the Spectral-Temporal Energy Distribution: Possible two SN Ib Subtypes
- STag: Supernova Tagging and Classification
- The fast rise of the unusual Type IIL/IIb SN 2018ivc
- SN2017ckj: A linearly declining Type IIb supernova with a relatively massive hydrogen envelope
- Supernova environments in J-PLUS. Normalized Cumulative Rank distributions and stellar population synthesis, combining narrow- and broad-band filters
- A graph-based spectral classification of Type II supernovae