Spectroscopic Modeling of Luminous Transients Powered by H-Rich and He-Rich Circumstellar Interaction
arXiv:2411.11517 · doi:10.3847/1538-4357/ad93d7
Abstract
In this study, we perform detailed spectroscopic modeling to analyze the interaction of circumstellar material (CSM) with ejecta in both hydrogen-rich and hydrogen-poor superluminous supernovae (SLSNe), systematically varying properties such as CSM density, composition, and geometry to explore their effects on spectral lines and light curve evolution. Using advanced radiative transfer simulations with the new, open-source SuperLite code to generate synthetic spectra, we identify key spectroscopic indicators of CSM characteristics. Our findings demonstrate that spectral lines of hydrogen and helium exhibit significant variations due to differences in CSM mass and composition. In hydrogen-rich SLSN- II, we observe pronounced hydrogen emission lines that correlate strongly with dense, extended CSM, suggesting massive, eruptive mass-loss histories. Conversely, in hydrogen-poor SLSNe, we recover mostly featureless spectra at early times, with weak hydrogen lines appearing only in the very early phases of the explosion, highlighting the quick ionization of traces of hydrogen present in the CSM. We analyze the properties of the resulting emission lines, particularly and , for our models using sophisticated statistical methods. This analysis reveals how variations in the supernova progenitor and CSM properties can lead to distinct spectroscopic evolutions over time. These temporal changes provide crucial insights into the underlying physics driving the explosion and the subsequent interaction with the CSM. By linking these spectroscopic observations to the initial properties of the progenitor and its surrounding ma
Accepted for publication in the ApJ
References in corpus (20)
- Array Programming with NumPy
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- Modules for Experiments in Stellar Astrophysics (MESA)
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- Theoretical light curves for deflagration models of Type Ia supernova
- SN 2006gy: An extremely luminous supernova in the galaxy NGC 1260
- SN 2006tf: Precursor Eruptions and the Optically Thick Regime of Extremely Luminous Type IIn Supernovae
- The evolution of runaway stellar collision products
- Shell-shocked diffusion model for the light curve of SN2006gy
- Super-luminous supernovae at redshifts of 2.05 and 3.90
- Numerical simulations of super-luminous supernovae of type IIn
- Superluminous supernova 2015bn in the nebular phase: evidence for the engine-powered explosion of a stripped massive star
- Radiation Transport for Explosive Outflows: Opacity Regrouping
- Superluminous supernovae: an explosive decade
- Helium stars exploding in circumstellar material and the origin of Type Ibn supernovae
- FLEET: A Redshift-Agnostic Machine Learning Pipeline to Rapidly Identify Hydrogen-Poor Superluminous Supernovae
- Using spectral modeling to break light-curve degeneracies of type II supernovae interacting with circumstellar material
- Modeling of the nebular-phase spectral evolution of stripped-envelope supernovae. New grids from 100 to 450 days
- Monte Carlo Radiation Transport for Astrophysical Transients Powered by Circumstellar Interaction