Spectroscopic observations of progenitor activity 100 days before a Type Ibn supernova
arXiv:2401.15148 · doi:10.1051/0004-6361/202449350
Abstract
Obtaining spectroscopic observations of the progenitors of core-collapse supernovae is often unfeasible due to an inherent lack of knowledge as to which stars will go supernova and when they will explode. In this letter, we present photometric and spectroscopic observations of the progenitor activity of SN 2023fyq in the preceding 150 days before the He-rich progenitor exploded as a Type Ibn supernova. The progenitor of SN 2023fyq shows an exponential rise in flux prior to core-collapse. Complex He I emission line features are observed, with a P-Cygni like profile, as well as an evolving broad base with velocities on the order of 10,000 km/s, possibly due to electron scattering. The luminosity and evolution of SN 2023fyq are consistent with a faint Type Ibn, reaching a peak r-band magnitude of 18.1 mag, although there is some uncertainty in the distance to the host, NGC 4388, located in the Virgo cluster. We present additional evidence of asymmetric He-rich material being present prior to the explosion of SN 2023fyq, as well as after, suggesting this material has survived the ejecta-CSM interaction. Broad [O I] and the Ca II triplet lines are observed at late phases, confirming that SN 2023fyq was a genuine supernova rather than a non-terminal interacting transient. SN 2023fyq provides insight into the final moments of a massive star's life, highlighting that the progenitor is likely highly unstable before core-collapse.
7 Pages, 5 Figures, accepted to A&A Letters
References in corpus (32)
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- The Zwicky Transient Facility: Data Processing, Products, and Archive
- Physical Properties of Wolf-Rayet Stars
- The Zwicky Transient Facility: Science Objectives
- Pulsational pair instability as an explanation for the most luminous supernovae
- A giant outburst two years before the core-collapse of a massive star
- The Data Processing Pipeline for the MUSE Instrument
- SN 2006jc: A Wolf-Rayet Star Exploding in a Dense He-Rich Circumstellar Medium
- From Shock Breakout to Peak and Beyond: Extensive Panchromatic Observations of the Type Ib Supernova 2008D associated with Swift X-ray Transient 080109
- The Zwicky Transient Facility: Observing System
- Fully-Automated Reduction of Longslit Spectroscopy with the Low Resolution Imaging Spectrometer at Keck Observatory
- A Fully Automated Integral Field Spectrograph Pipeline for the SEDMachine: pysedm
- Final Moments I: Precursor Emission, Envelope Inflation, and Enhanced Mass loss Preceding the Luminous Type II Supernova 2020tlf
- Massive stars exploding in a He-rich circumstellar medium III. SN 2006jc: IR echoes from new and old dust in the progenitor CSM
- Bright, months-long stellar outbursts announce the explosion of interaction-powered supernovae
- A data science platform to enable time-domain astronomy
- Nebular phase observations of the type-Ib supernova iPTF13bvn favour a binary progenitor
- Connecting the progenitors, pre-explosion variability, and giant outbursts of luminous blue variables with Gaia16cfr
- SN 2015bh: NGC 2770's 4th supernova or a luminous blue variable on its way to a Wolf-Rayet star?
- New Modules for the SEDMachine to Remove Contaminations from Cosmic Rays and Non-target Light: BYECR and CONTSEP
- The Automated Photometry Of Transients (AutoPhOT) pipeline
- Investigating the Diversity of Type Ia Supernova Spectra with the Open-Source Relational Database Kaepora
- SN 2018bsz: a Type I superluminous supernova with aspherical circumstellar material
- Supernova Precursor Emission and the Origin of Pre-Explosion Stellar Mass-Loss
- Wave-driven mass loss of stripped envelope massive stars: progenitor-dependence, mass ejection, and supernovae
- DBSP_DRP: A Python package for automated spectroscopic data reduction of DBSP data
- Light Echoes from Eta Carinae's Great Eruption: Spectrophotometric Evolution and the Rapid Formation of Nitrogen-rich Molecules
- Photometric and spectroscopic evolution of the interacting transient AT 2016jbu (Gaia16cfr)
- Progenitor, environment, and modelling of the interacting transient, AT 2016jbu (Gaia16cfr)
- 3D Hydrodynamics of Pre-supernova Outbursts in Convective Red Supergiant Envelopes
- SN 2019zrk, a bright SN 2009ip analog with a precursor
- iPTF14hls in the circumstellar medium interaction model: A promising candidate for a pulsational pair-instability supernova
Cited by in corpus (6)
- Mass-transferring binary stars as progenitors of interacting hydrogen-free supernovae
- 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 long-lasting eruption heralds SN 2023ldh, a clone of SN 2009ip
- 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