Circumstellar interaction in type Ibn supernovae and SN 2006jc
arXiv:0908.0568 · doi:10.1111/j.1365-2966.2009.15506.x
Abstract
I analyse peculiar properties of light curve and continua of enigmatic Ibn supernovae, including SN 2006jc, and argue in favour of the early strong circumstellar interaction. This interaction explains the high luminosity and fast flux rise of SN 1999cq, while the cool dense shell formed in shocked ejecta can explain the smooth early continuum of SN 2000er and unusual blue continuum of SN 2006jc. The dust is shown to condense in the cool dense shell at about day 50. Monte Carlo modelling of the He I 7065 Åline profile affected by the dust occultation supports a picture, in which the dust resides in the fragmented cool dense shell, whereas He I lines originate from circumstellar clouds shocked and fragmented in the forward shock wave.
10 pages, 6 figures, MNRAS accepted
References in corpus (12)
- Pulsational pair instability as an explanation for the most luminous 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
- Dust Formation and He II 4686 emission in the Dense Shell of the Peculiar Type Ib Supernova 2006jc
- Massive stars exploding in a He-rich circumstellar medium III. SN 2006jc: IR echoes from new and old dust in the progenitor CSM
- Optical Signatures of Circumstellar Interaction in Type IIP Supernovae
- 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
- Early Formation of Dust in the Ejecta of Type Ib SN 2006jc and Temperature and Mass of the Dust
- The Peculiar Type Ib Supernova 2006jc: A WCO Wolf-Rayet Star Explosion
- Optical photometry and spectroscopy of the type Ibn supernova SN 2006jc until the onset of dust formation
- Near-Infrared observations of the type Ib Supernova SN2006jc: evidence of interactions with dust
Cited by in corpus (49)
- A Wolf-Rayet-like progenitor of supernova SN 2013cu from spectral observations of a wind
- Thermal and non-thermal emission from circumstellar interaction
- SN 2011ht: Confirming a Class of Interacting Supernovae with Plateau Light Curves (Type IIn-P)
- Superluminous Supernovae Powered by Magnetars: Late-time Light Curves and Hard Emission Leakage
- The Type Icn SN 2021csp: Implications for the Origins of the Fastest Supernovae and the Fates of Wolf-Rayet Stars
- Massive stars exploding in a He-rich circumstellar medium. IV. Transitional Type Ibn Supernovae
- Massive stars exploding in a He-rich circumstellar medium - IX. SN 2014av, and characterization of Type Ibn SNe
- SN 2011hw: Helium-Rich Circumstellar Gas and the Luminous Blue Variable to Wolf-Rayet Transition in Supernova Progenitors
- Direct evidence for a supernova interacting with a large amount of hydrogen-free circumstellar material
- PS1-12sk is a Peculiar Supernova From a He-rich Progenitor System in a Brightest Cluster Galaxy Environment
- Spectral modelling of the "Super-Chandra" Type Ia SN 2009dc - testing a 2 M_sun white dwarf explosion model and alternatives
- Properties of Type Ibn Supernovae: Implications for the Progenitor Evolution and the Origin of a Population of Rapid Transients
- Delayed Shock-induced Dust Formation in the Dense Circumstellar Shell Surrounding the Type IIn Supernova SN 2010jl
- Are Models for Core-Collapse Supernova Progenitors Consistent with the Properties of Supernova Remnants?
- Origins of Type Ibn SNe 2006jc/2015G in interacting binaries and implications for pre-SN eruptions
- Massive stars exploding in a He-rich circumstellar medium. V. Observations of the slow-evolving SN Ibn OGLE-2012-SN-006
- A Triple-Energy-Source Model for Superluminous Supernova iPTF13ehe
- A Monte Carlo Approach to Magnetar-powered Transients: I. Hydrogen-deficient Superluminous Supernovae
- The Nearby Type Ibn Supernova 2015G: Signatures of Asymmetry and Progenitor Constraints
- Massive stars exploding in a He-rich circumstellar medium. VI. Observations of two distant Type Ibn supernova candidates discovered by La Silla-QUEST
- A radio-detected Type Ia supernova with helium-rich circumstellar material
- Helium stars exploding in circumstellar material and the origin of Type Ibn supernovae
- The Peculiar Transient AT2018cow: A Possible Origin of A Type Ibn/IIn Supernova
- A Systematic Study of Ia-CSM Supernovae from the ZTF Bright Transient Survey
- Type IIn SN~2010jl: probing dusty line-emitting shell
- OGLE-2014-SN-131: A long-rising Type Ibn supernova from a massive progenitor
- Massive stars exploding in a He-rich circumstellar medium - VII. The metamorphosis of ASASSN-15ed from a narrow line Type Ibn to a normal Type Ib Supernova
- SN 2018gjx reveals that some SNe Ibn are SNe IIb exploding in dense circumstellar material
- Circumstellar and explosion properties of Type Ibn supernovae
- The Energy Sources of Superluminous Supernovae
- Massive stars exploding in a He-rich circumstellar medium - VIII. PSN J07285387+3349106, a highly reddened supernova Ibn
- ASASSN-15nx: A luminous Type II supernova with a "perfect" linear decline
- LSQ13ddu: A rapidly-evolving stripped-envelope supernova with early circumstellar interaction signatures
- Mass-transferring binary stars as progenitors of interacting hydrogen-free supernovae
- SN 2020bqj: a Type Ibn supernova with a long lasting peak plateau
- A Multi-Wavelength View on the Rapidly-Evolving Supernova 2018ivc: An Analog of SN IIb 1993J but Powered Primarily by Circumstellar Interaction
- Dust Production in a Thin Dense Shell in Supernovae with Early Circumstellar Interactions
- Exploring the Energy Sources Powering the Light Curve of the Type Ibn Supernova PS15dpn and the Mass-Loss History of the SN Progenitor
- The Interaction of Supernova 2018evt with a Substantial Amount of Circumstellar Matter -- An SN1997cy-like Event
- ASASSN-18am/SN 2018gk : An overluminous Type IIb supernova from a massive progenitor
- A Search for Infrared Emission from Core-Collapse Supernovae at the Transitional Phase
- Large Cold Dust Reservoir Revealed in Transitional SN Ib 2014C by James Webb Space Telescope Mid-Infrared Spectroscopy
- Massive stars exploding in a He-rich circumstellar medium. XI. Diverse evolution of five Ibn SNe 2020nxt, 2020taz, 2021bbv, 2023utc and 2024aej
- Wind of presupernova IIn SN~1997eg
- Massive stars exploding in a He-rich circumstellar medium X. Flash spectral features in the Type Ibn SN 2019cj and observations of SN 2018jmt
- Insights into the Properties of Type Ibn/Icn Supernovae and Their Progenitor Channels through X-ray Emission
- A thermonuclear supernova interacting with hydrogen- and helium-deficient circumstellar material. SN 2020aeuh as a SN Ia-CSM-C/O?
- Luminous, rapidly declining supernovae as stripped transitional objects in low metallicity environments: the case of SN 2022lxg
- Luminosity source in supernova ASASSN-15nx with long linear light curve