Metallicity at the explosion sites of interacting transients
arXiv:1505.04719 · doi:10.1051/0004-6361/201525989
Abstract
Context. Some circumstellar-interacting (CSI) supernovae (SNe) are produced by the explosions of massive stars that have lost mass shortly before the SN explosion. There is evidence that the precursors of some SNe IIn were luminous blue variable (LBV) stars. For a small number of CSI SNe, outbursts have been observed before the SN explosion. Eruptive events of massive stars are named as SN impostors (SN IMs) and whether they herald a forthcoming SN or not is still unclear. The large variety of observational properties of CSI SNe suggests the existence of other progenitors, such as red supergiant (RSG) stars with superwinds. Furthermore, the role of metallicity in the mass loss of CSI SN progenitors is still largely unexplored. Aims. Our goal is to gain insight on the nature of the progenitor stars of CSI SNe by studying their environments, in particular the metallicity at their locations. Methods. We obtain metallicity measurements at the location of 60 transients (including SNe IIn, SNe Ibn, and SN IMs), via emission-line diagnostic on optical spectra obtained at the Nordic Optical Telescope and through public archives. Metallicity values from the literature complement our sample. We compare the metallicity distributions among the different CSI SN subtypes and to those of other core-collapse SN types. We also search for possible correlations between metallicity and CSI SN observational properties. Results. We find that SN IMs tend to occur in environments with lower metallicity than those of SNe IIn. Among SNe IIn, SN IIn-L(1998S-like) SNe show higher metallicities, similar to those of SNe IIL/P, whereas long-lasting SNe IIn (1988Z-like) show lower metallicities, similar to those of SN IMs. The metallicity distribution of SNe IIn can be reproduced by combining the metallicity distributions of SN IMs (that may be produced by major outbursts of massive stars like LBVs) and SNe IIP (produced by RSGs). The same applies to the distributions of the Normalized Cumulative Rank (NCR) values, which quantifies the SN association to H II regions. For SNe IIn, we find larger mass-loss rates and higher CSM velocities at higher metallicities. The luminosity increment in the optical bands during SN IM outbursts tend to be larger at higher metallicity, whereas the SN IM quiescent optical luminosities tend to be lower. Conclusions. The difference in metallicity between SNe IIn and SN IMs suggests that LBVs are only one of the progenitor channels for SNe IIn, with 1988Z-like and 1998S-like SNe possibly arising from LBVs and RSGs, respectively. Finally, even though linedriven winds likely do not primarily drive the late mass-loss of CSI SN progenitors, metallicity has some impact on the observational properties of these transients. Key words. supernovae: general - stars: evolution - galaxies: abundances
Submitted to Astronomy and Astrophysics on 28/02/2015; submitted to arXiv after the 1st referee report
References in corpus (35)
- 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
- SN 2006tf: Precursor Eruptions and the Optically Thick Regime of Extremely Luminous Type IIn Supernovae
- Spectroscopy of superluminous supernova host galaxies. A preference of hydrogen-poor events for extreme emission line galaxies
- A New Class of Luminous Transients and A First Census of Their Massive Stellar Progenitors
- Massive stars exploding in a He-rich circumstellar medium. I. Type Ibn (SN 2006jc-like) events
- Red supergiants as potential Type IIn supernova progenitors: Spatially resolved 4.6 micron CO emission around VY CMa and Betelgeuse
- Luminous Blue Variables are Antisocial: Their Isolation Implies that they are Kicked Mass Gainers in Binary Evolution
- PTF11iqb: Cool supergiant mass loss that bridges the gap between Type IIn and normal supernovae
- GRBs as Cosmological Probes - Cosmic Chemical Evolution
- Progenitor Diagnostics for Stripped Core-Collapse Supernovae: Measured Metallicities at Explosion Sites
- SN 1994W: An Interacting Supernova or Two Interacting Shells?
- P-MaNGA: Emission Lines Properties - Gas Ionisation and Chemical Abundances from Prototype Observations
- Massive stars exploding in a He-rich circumstellar medium. II. The transitional case of SN 2005la
- Constraints on core-collapse supernova progenitors from correlations with H-alpha emission
- Supernova 2002ic: the collapse of a stripped-envelope, massive star in a dense medium ?
- Faint Supernovae and Supernova Impostors: Case studies of SN2002kg/NGC2403-V37 and SN 2003gm
- Massive stars exploding in a He-rich circumstellar medium. IV. Transitional Type Ibn Supernovae
- Metallicity at the explosion sites of interacting transients
- SN 2009kn - the twin of the Type IIn supernova 1994W
- Statistical studies of supernova environments
- The properties of SN Ib/c locations
- The H alpha Galaxy Survey. III. Constraints on supernova progenitors from spatial correlations with H alpha emission
- Interacting supernovae from photoionization-confined shells around red supergiant stars
- On the association between core-collapse supernovae and HII regions
- Supernovae and their host galaxies. I. The SDSS DR8 database and statistics
- Environments of interacting transients: Impostors and type IIn supernovae
- On the Nature of Type Ia-CSM Supernovae: Optical and Near-Infrared Spectra of SN 2012ca and SN 2013dn
- Massive stars exploding in a He-rich circumstellar medium. VI. Observations of two distant Type Ibn supernova candidates discovered by La Silla-QUEST
- Optical photometry and spectroscopy of the type Ibn supernova SN 2006jc until the onset of dust formation
- Constraining Physical Properties of Type IIn Supernovae through Rise Times and Peak Luminosities
- Interacting supernovae and supernova impostors. SN 2007sv: the major eruption of a massive star in UGC 5979
- Correcting second-order contamination in low-resolution spectra
- Metallicity Measurements of Gamma-Ray Burst and Supernova Explosion Sites: Lessons from HII regions in M31
- Circumstellar Na I and Ca II lines in type IIP supernovae and SN 1998S
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- Metamorphosis of SN 2014C: Delayed Interaction Between a Hydrogen Poor Core-collapse Supernova and a Nearby Circumstellar Shell
- LOSS Revisited - II: The relative rates of different types of supernovae vary between low- and high-mass galaxies
- The Palomar Transient Factory Core-Collapse Supernova Host-Galaxy Sample. I. Host-Galaxy Distribution Functions and Environment-Dependence of CCSNe
- Characterising the environments of supernovae with MUSE
- PISCO: The Pmas/ppak Integral-field Supernova hosts COmpilation
- Thermal and non-thermal emission from circumstellar interaction
- The multi-faceted Type II-L supernova 2014G from pre-maximum to nebular phase
- Type IIn supernova light-curve properties measured from an untargeted survey sample
- Constraints on core-collapse supernova progenitors from explosion site integral field spectroscopy
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- Massive stars exploding in a He-rich circumstellar medium - IX. SN 2014av, and characterization of Type Ibn SNe
- SN 2015bh: NGC 2770's 4th supernova or a luminous blue variable on its way to a Wolf-Rayet star?
- Interacting supernovae and supernova impostors. LSQ13zm: an outburst heralds the death of a massive star
- The bumpy light curve of supernova iPTF13z
- iPTF15dtg: a double-peaked Type Ic Supernova from a massive progenitor
- Investigating the diversity of supernovae type Iax: A MUSE and NOT spectroscopic study of their environments
- Long-rising Type II supernovae from PTF and CCCP
- The long-lived Type IIn SN 2015da: Infrared echoes and strong interaction within an extended massive shell
- Supernova Progenitors, Their Variability, and the Type IIP Supernova ASASSN-16fq in M66
- Rapidly evolving faint transients from stripped-envelope electron-capture supernovae
- The possible detection of a binary companion to a Type Ibn supernova progenitor
- The Peculiar Transient AT2018cow: A Possible Origin of A Type Ibn/IIn Supernova
- The Carnegie Supernova Project II. The shock wave revealed through the fog: The strongly interacting Type IIn SN 2013L
- Nearby supernova host galaxies from the CALIFA Survey: II. SN environmental metallicity
- 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
- The luminous and rapidly evolving SN 2018bcc: Clues toward the origin of Type Ibn SNe from the Zwicky Transient Facility
- Two Distinct-Absorption X-Ray Components from Type IIn Supernovae: Evidence for Asphericity in the Circumstellar Medium
- The Slow Demise of the Long-Lived SN 2005ip
- Core-collapse supernova progenitor constraints using the spatial distributions of massive stars in local galaxies
- On the observational behaviour of the highly polarized Type IIn supernova SN 2017hcc
- Supernova 2013fc in a circumnuclear ring of a luminous infrared galaxy: the big brother of SN 1998S
- A Long-Duration Luminous Type IIn Supernova KISS15s: Strong Recombination Lines from the Inhomogeneous Ejecta-CSM Interaction Region and Hot Dust Emission from Newly Formed Dust
- Luminous Type II supernovae for their low expansion velocities
- Supernovae and their host galaxies - V. The vertical distribution of supernovae in disc galaxies
- Progenitor, environment, and modelling of the interacting transient, AT 2016jbu (Gaia16cfr)
- Metallicity from Type II Supernovae from the (i)PTF
- Massive stars exploding in a He-rich circumstellar medium - VIII. PSN J07285387+3349106, a highly reddened supernova Ibn
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- Observational signature of circumstellar interaction and Ni-mixing in the Type II Supernova 2016gfy
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- Metallicity Estimation of Core-Collapse Supernova HII Regions in Galaxies within 30 Mpc
- HSC16aayt: Slowly evolving interacting transient rising for more than 100 days
- Massive stars exploding in a He-rich circumstellar medium. XI. Diverse evolution of five Ibn SNe 2020nxt, 2020taz, 2021bbv, 2023utc and 2024aej
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- Massive stars exploding in a He-rich circumstellar medium X. Flash spectral features in the Type Ibn SN 2019cj and observations of SN 2018jmt
- The Carnegie Supernova Project II. Early observations and progenitor constraints of the Type Ib supernova LSQ13abf
- SN 2024hpj: A perspective on SN 2009ip-like events
- Constraining the TeV gamma-ray emission of SN 2024bch, a possible type IIn-L from a red supergiant progenitor. Multiwavelength observations and analysis of the progenitor