Early-time spectra of supernovae and their precursor winds: the luminous blue variable/yellow hypergiant progenitor of SN 2013cu
arXiv:1408.5397 · doi:10.1051/0004-6361/201424852
Abstract
We present the first quantitative spectroscopic modeling of an early-time supernova that interacts with its progenitor wind. Using the radiative transfer code CMFGEN, we investigate the recently-reported 15.5 h post-explosion spectrum of the type IIb SN 2013cu. For the first time, we are able to directly measure the chemical abundances of a SN progenitor and find a relatively H-rich wind, with H and He abundances (by mass) of X=0.46 +- 0.2 and Y=0.52 +- 0.2, respectively. The wind is enhanced in N and depleted in C relative to solar values (mass fractions of 8.2e-3 and 1e-5). We obtain that a dense wind/circumstellar medium, with a mass-loss rate of Mdot= 3e-3 Msun/yr and wind velocity vwind=100 km/s, surrounds the star at the pre-SN stage. These values are lower than previous analytical estimates, although we find Mdot/vinf consistent with previous work. We also compute a CMFGEN model to constrain the progenitor spectral type and find that the high Mdot and low vwind imply that the star had an effective temperature of ~8000 K immediately before the SN explosion. Our models suggest that the progenitor was either an unstable luminous blue variable or a yellow hypergiant undergoing an eruptive phase, and rule out a WR star. We classify the post-explosion spectra at 15.5 h as XWN5(h) and advocate for the use of the prefix `X' (eXplosion) to avoid confusion between post-explosion, non-stellar spectra with those of massive stars. We show that the progenitor spectral type is significantly different than the early post-explosion spectral type owing to the huge differences in the ionization structure before and after the SN event. We find the following temporal evolution: LBV/YHG -> XWN5(h) -> SN IIb. Future early-time spectroscopy in the UV will give access to additional spectroscopic diagnostics and further constrain the properties of SN precursors, such as their metallicities.
4 pages, 3 figures, submitted to A&A, comments welcome
References in corpus (10)
- A giant outburst two years before the core-collapse of a massive star
- A Wolf-Rayet-like progenitor of supernova SN 2013cu from spectral observations of a wind
- Circumstellar Emission from Type Ib and Ic Supernovae
- Luminous Blue Variables as the progenitors of supernovae with quasi-periodic radio modulations
- A Massive Progenitor of the Luminous Type IIn Supernova 2010jl
- SN 1994W: An Interacting Supernova or Two Interacting Shells?
- SN 2005 gj: Evidence for LBV supernovae progenitors?
- Probing Shock Breakout with Serendipitous GALEX Detections of Two SNLS Type II-P Supernovae
- The UV Scattering Halo of the Central Source Associated with Eta Carinae
- Constraining Physical Properties of Type IIn Supernovae through Rise Times and Peak Luminosities
Cited by in corpus (41)
- Confined Dense Circumstellar Material Surrounding a Regular Type II Supernova: The Unique Flash-Spectroscopy Event of SN 2013fs
- PTF11iqb: Cool supergiant mass loss that bridges the gap between Type IIn and normal supernovae
- A large fraction of hydrogen-rich supernova progenitors experience elevated mass loss shortly prior to explosion
- Final Moments I: Precursor Emission, Envelope Inflation, and Enhanced Mass loss Preceding the Luminous Type II Supernova 2020tlf
- Theory and Diagnostics of Hot Star Mass Loss
- Early Emission from the Type IIn Supernova 1998S at High Resolution
- SN 2015bh: NGC 2770's 4th supernova or a luminous blue variable on its way to a Wolf-Rayet star?
- The Early Phases of Supernova 2020pni: Shock-Ionization of the Nitrogen-Enriched Circumstellar Material
- Properties of Type Ibn Supernovae: Implications for the Progenitor Evolution and the Origin of a Population of Rapid Transients
- Alert Classification for the ALeRCE Broker System: The Real-time Stamp Classifier
- SN2013fs and SN2013fr: Exploring the circumstellar-material diversity in Type II supernovae
- The early discovery of SN 2017ahn: signatures of persistent interaction in a fast declining Type II supernova
- Dust in the wind: the role of recent mass loss in long gamma-ray bursts
- Seven years of coordinated Chandra-NuSTAR observations of SN2014C unfold the extreme mass-loss history of its stellar progenitor
- The final months of massive star evolution from the circumstellar environment around SN Ic 2020oi
- A non-equipartition shockwave traveling in a dense circumstellar environment around SN2020oi
- Progenitors of Type IIb Supernovae: II. Observable Properties
- SN 2018gjx reveals that some SNe Ibn are SNe IIb exploding in dense circumstellar material
- Hydrodynamic Simulations of Pre-Supernova Outbursts in Red Supergiants: Asphericity and Mass Loss
- SNAPSHOT: Connections between Internal and Surface Properties of Massive Stars
- Early emission lines in SN 2024ggi revealed by high-resolution spectroscopy
- Radio Analysis of SN 2004C Reveals an Unusual CSM Density Profile as a Harbinger of Core Collapse
- A Multi-Wavelength View on the Rapidly-Evolving Supernova 2018ivc: An Analog of SN IIb 1993J but Powered Primarily by Circumstellar Interaction
- A cosmic formation site of silicon and sulphur revealed by a new type of supernova explosion
- Wave-Driven Shocks in Stellar Outbursts: Dynamics, Envelope Heating, and Nascent Blastwaves
- Revisiting the evolved hypergiants in the Magellanic Clouds
- Resurrection of type IIL supernova 2018ivc: Implications for a binary evolution sequence connecting hydrogen-rich and -poor progenitors
- Inferring CSM Properties of Type II SNe Using a Magnitude-Limited ZTF Sample
- Evolution of A Peculiar Type Ibn Supernova SN 2019wep
- Exploring the Observability of Surviving Companions of Stripped-Envelope Supernovae: A Case Study of Type Ic SN 2020oi
- The Immediate, Exemplary, and Fleeting echelle spectroscopy of SN 2023ixf: Monitoring acceleration of slow progenitor circumstellar material, driven by shock interaction
- One Year of SN 2023ixf: Breaking Through the Degenerate Parameter Space in Light-Curve Models with Pulsating Progenitors
- A massive nebula around the Luminous Blue Variable star RMC143 revealed by ALMA
- Hydrodynamical interaction of mildly relativistic ejecta with an ambient medium
- The contribution by luminous blue variable stars to the dust content of the Magellanic Clouds
- SN 2019nyk: A rapidly declining Type II supernova with early interaction signatures
- The origins of low-luminosity supernovae: the case of SN 2016bkv
- Confined massive circumstellar shell in type IIL SN 2008fq
- First day of type IIP supernova SN 2013fs: H from preshock accelerated gas
- Supernovae in colliding-wind binaries: observational signatures in the first year
- Spectroscopy of AT 2016blu's recurring supernova impostor outbursts