A High-Velocity Scatterer Revealed in the Thinning Ejecta of a Type II Supernova
arXiv:2110.10875 · doi:10.3847/2041-8213/ac31bf
Abstract
We present deep, nebular-phase spectropolarimetry of the Type II-P/L SN 2013ej, obtained 167 days after explosion with the European Southern Observatory's Very Large Telescope. The polarized flux spectrum appears as a nearly perfect (92% correlation), redshifted (by ~4,000 km/sec) replica of the total flux spectrum. Such a striking correspondence has never been observed before in nebular-phase supernova spectropolarimetry, although data capable of revealing it have heretofore been only rarely obtained. Through comparison with 2D polarized radiative transfer simulations of stellar explosions, we demonstrate that localized ionization produced by the decay of a high-velocity, spatially confined clump of radioactive 56-Ni -- synthesized by and launched as part of the explosion with final radial velocity exceeding 4,500 km/sec -- can reproduce the observations through enhanced electron scattering. Additional data taken earlier in the nebular phase (day 134) yield a similarly strong correlation (84%) and redshift, whereas photospheric-phase epochs that sample days 8 through 97, do not. This suggests that the primary polarization signatures of the high-velocity scattering source only come to dominate once the thick, initially opaque hydrogen envelope has turned sufficiently transparent. This detection in an otherwise fairly typical core-collapse supernova adds to the growing body of evidence supporting strong asymmetries across Nature's most common types of stellar explosions, and establishes the power of polarized flux -- and the specific information encoded by it in line photons at nebular epochs -- as a vital tool in such investigations going forward.
Accepted for publication in The Astrophysical Journal Letters
References in corpus (15)
- The Supernova -- Gamma-Ray Burst Connection
- Observational constraints on the progenitors of core-collapse supernovae : the case for missing high mass stars
- Three-Dimensional Simulations of Core-Collapse Supernovae: From Shock Revival to Shock Breakout
- Dos and don'ts of reduced chi-squared
- A Sample of Type II-L Supernovae
- Signatures of a jet cocoon in early spectra of a supernova associated with a -ray burst
- Multi-epoch spectropolarimetry of SN 2009ip: direct evidence for aspherical circumstellar material
- Asphericity, Interaction, and Dust in the Type II-P/II-L Supernova 2013ej in Messier 74
- Matter Mixing in Aspherical Core-collapse Supernovae: Three-dimensional Simulations with Single Star and Binary Merger Progenitor Models for SN 1987A
- Linear spectropolarimetry of polarimetric standard stars with VLT/FORS2
- After the Fall: Late-Time Spectroscopy of Type IIP Supernovae
- Luminous type IIP SN 2013ej with high-velocity Ni-56 ejecta
- Evidence for multiple origins of fast declining Type II supernovae from spectropolarimetry of SN 2013ej and SN 2017ahn
- An Upper Mass Limit on a Red Supergiant Progenitor for the Type II-Plateau Supernova SN 2006my
- Constraining early-time dust formation in core-collapse supernovae