Spectropolarimetric modeling of interacting Type II supernovae. Application to early-time observations of SN1998S
arXiv:2409.13562 · doi:10.1051/0004-6361/202452327
Abstract
High-cadence surveys of the sky are revealing that a large fraction of red-supergiant (RSG) stars, which are progenitors of Type II-Plateau (II-P) supernovae (SNe), explode within circumstellar material (CSM). Such SNe II-P/CSM exhibit considerable diversity, with interaction signatures lasting from hours to days, potentially merging with the Type IIn subclass for which longer-duration interaction typically occurs. To tackle this growing sample of transients and to understand the pre-SN mass loss histories of RSGs, we train on the highest quality, spectropolarimetric observations of a young Type IIn SN taken to date: Those of SN1998S at ~5d after explosion. We design an approach based on a combination of radiation hydrodynamics with HERACLES and polarized radiative transfer with CMFGEN and LONG_POL. The adopted asymmetries are based on a latitudinal, depth- and time-independent, scaling of the density of 1D models of SNe II-P/CSM (e.g., model r1w6b with a `wind' mass-loss rate of 0.01Msun/yr used for SN2023ixf). For a pole-to-equator density ratio of five, we find that the polarization reaches, and then remains for days, at a maximum value of 1.0, 1.4, and 1.8% as the CSM extent is changed from 6, to 8 and 10x10^14cm. The polarization is independent of wavelength away from funnel-shaped depolarizations within emission lines. Our models implicate a significant depolarization at line cores, which we use to constrain the interstellar polarization of SN1998S. Our 2D, prolate ejecta models with moderate asymmetry match well the spectropolarimetric observations of SN1998S at 5d, supporting a polarization level of about ~2%. This study provides a framework for interpreting future spectropolarimetric observations of SNe II-P/CSM and SNe IIn and fostering a better understanding of the origin of their pre-SN mass loss.
Submitted to A&A Letters
References in corpus (13)
- Spectropolarimetry of Supernovae
- Confined Dense Circumstellar Material Surrounding a Regular Type II Supernova: The Unique Flash-Spectroscopy Event of SN 2013fs
- SN 1994W: An Interacting Supernova or Two Interacting Shells?
- Numerical simulations of super-luminous supernovae of type IIn
- Early Emission from the Type IIn Supernova 1998S at High Resolution
- Multi-epoch spectropolarimetry of SN 2009ip: direct evidence for aspherical circumstellar material
- The prevalence and influence of circumstellar material around hydrogen-rich supernova progenitors
- Extreme mass loss in low-mass type Ib/c supernova progenitors
- Boil-off of red supergiants: mass loss and type II-P supernovae
- A pre-explosion extended effervescent zone around core collapse supernova progenitors
- Evidence for multiple origins of fast declining Type II supernovae from spectropolarimetry of SN 2013ej and SN 2017ahn
- Early emission lines in SN 2024ggi revealed by high-resolution spectroscopy
- Probing red-supergiant atmospheres and winds with early-time high-cadence high-resolution type II supernova spectra
Cited by in corpus (4)
- An axisymmetric shock breakout indicated by prompt polarized emission from the type II supernova 2024ggi
- SN 2016iog: A fast declining Type II-L supernova with an ultra-faint tail, persistently interacting with circumstellar material
- Asymmetrical thermonuclear supernovae triggered by the tidal disruption of white dwarfs
- Analytical modeling of polarization signals arising from confined circumstellar material in Type II supernovae