Helium stars exploding in circumstellar material and the origin of Type Ibn supernovae
arXiv:2111.13360 · doi:10.1051/0004-6361/202142436
Abstract
Type Ibn supernovae (SNe) are a mysterious class of transients whose spectra exhibit persistently narrow HeI lines, and whose bolometric light curves are typically fast evolving and overluminous at peak relative to standard Type Ibc SNe. We explore the interaction scenario of such Type Ibn SNe by performing radiation-hydrodynamics and radiative-transfer calculations. We find that standard-energy helium-star explosions within dense wind-like circumstellar material (CSM) can reach on day timescales a peak luminosity of a few 10^44 erg/s, reminiscent of exceptional events like AT2018cow. Similar interactions but with weaker winds can lead to Type Ibc SNe with double-peak light curves and peak luminosities in the range ~10^42.2 to ~10^43 erg/s. In contrast, the narrow spectral lines and modest peak luminosities of most Type Ibn SNe are suggestive of a low-energy explosion in an initially <~5 Msun helium star, most likely arising from interacting binaries, and colliding with a massive helium-rich, probably ejecta-like, CSM at ~10^15 cm. Nonlocal thermodynamic equilibrium radiative-transfer simulations of a slow-moving dense shell born out and powered by the interaction compare favorably to Type Ibn SNe like 2006jc, 2011hw, or 2018bcc at late times and suggest a composition made of about 50% helium, a solar metallicity, and a total ejecta/CSM mass of 1-2Msun. A lower fractional helium abundance leads to weak or absent HeI lines and thus excludes more massive configurations for observed Type Ibn SNe. Further, the dominance of FeII emission below 5500A seen in Type Ibn SNe at late times is not predicted at low metallicity. Hence, despite their promising properties, Type Ibn SNe from pulsational-pair instability in very massive stars, which requires low metallicity, have probably not yet been observed.
Accepted for publication in A&A
References in corpus (17)
- Pulsational Pair-Instability Supernovae
- A giant outburst two years before the core-collapse of a massive star
- SN 2006jc: A Wolf-Rayet Star Exploding in a Dense He-Rich Circumstellar Medium
- The Evolution of Massive Helium Stars Including Mass Loss
- Massive stars exploding in a He-rich circumstellar medium. I. Type Ibn (SN 2006jc-like) events
- The Explosion of Helium Stars Evolved With Mass Loss
- Numerical simulations of super-luminous supernovae of type IIn
- Massive stars exploding in a He-rich circumstellar medium. II. The transitional case of SN 2005la
- Swift and Chandra Detections of Supernova 2006jc: Evidence for Interaction of the Supernova Shock with a Circumstellar Shell
- Massive stars exploding in a He-rich circumstellar medium. IV. Transitional Type Ibn Supernovae
- The Peculiar Type Ib Supernova 2006jc: A WCO Wolf-Rayet Star Explosion
- Type Ibn Supernovae May not all Come from Massive Stars
- Massive stars exploding in a He-rich circumstellar medium. V. Observations of the slow-evolving SN Ibn OGLE-2012-SN-006
- A Type Ia supernova at the heart of superluminous transient SN 2006gy
- The possible detection of a binary companion to a Type Ibn supernova progenitor
- Super-Eddington stellar winds: unifying radiative-enthalpy vs. flux-driven models
- Spectral signatures of H-rich material stripped from a non-degenerate companion by a Type Ia supernova
Cited by in corpus (21)
- Properties of Type Ibn Supernovae: Implications for the Progenitor Evolution and the Origin of a Population of Rapid Transients
- Extreme mass loss in low-mass type Ib/c supernova progenitors
- A radio-detected Type Ia supernova with helium-rich circumstellar material
- Using spectral modeling to break light-curve degeneracies of type II supernovae interacting with circumstellar material
- A UV census of the environments of stripped-envelope supernovae
- Modeling of the nebular-phase spectral evolution of stripped-envelope supernovae. New grids from 100 to 450 days
- An environmental analysis of the fast transient AT2018cow and implications for its progenitor and late-time brightness
- Mass-transferring binary stars as progenitors of interacting hydrogen-free supernovae
- Late-time H/He-poor circumstellar interaction in the type-Ic supernova SN 2021ocs: an exposed oxygen-magnesium layer and extreme stripping of the progenitor
- A cosmic formation site of silicon and sulphur revealed by a new type of supernova explosion
- The landscape of binary core-collapse supernova progenitors and the late emergence of Wolf-Rayet winds
- The long-term influence of a magnetar power in stripped-envelope supernovae. Radiative-transfer modeling of He-star explosions from 1 to 10 years
- Massive stars exploding in a He-rich circumstellar medium. XI. Diverse evolution of five Ibn SNe 2020nxt, 2020taz, 2021bbv, 2023utc and 2024aej
- Revisiting GRB 060218: new insights into low-luminosity gamma-ray bursts from a revised shock breakout model
- A thermonuclear supernova interacting with hydrogen- and helium-deficient circumstellar material. SN 2020aeuh as a SN Ia-CSM-C/O?
- Insights into the Properties of Type Ibn/Icn Supernovae and Their Progenitor Channels through X-ray Emission
- The hydrogen-free circumstellar interaction in the Type Ib supernova 2021efd: A clue to the mechanism of the helium-layer stripping
- SN 2024abvb: A Type Icn Supernova in the Outskirts of its Host Galaxy
- Can circumstellar interaction explain the strange light curve features of Type Ib/c supernovae?
- Using CSST and ejecta-wind interaction in type II-P supernovae to constrain the wind-mass loss of red supergiant stars
- Spectroscopic Modeling of Luminous Transients Powered by H-Rich and He-Rich Circumstellar Interaction