Modeling the Remnants of Core-collapse Supernovae from Luminous Blue Variable stars
S. Ustamujic, S. Orlando, M. Miceli, F. Bocchino, M. Limongi, A., Chieffi, C. Trigilio, G. Umana, F. Bufano, A. Ingallinera, and G. Peres

TL;DR
This study models supernova remnants from luminous blue variable stars to identify signatures of their progenitors, revealing asymmetric, elongated remnants shaped by complex circumstellar environments, aiding understanding of massive star evolution.
Contribution
It introduces a 3D hydrodynamic model of supernova remnants from LBV progenitors, incorporating detailed circumstellar medium interactions based on observational data.
Findings
Remnants exhibit significant asymmetry and elongation due to CSM interaction.
Ejecta form jet-like structures aligned with circumstellar shells.
Model results match observed features of LBV-related supernova remnants.
Abstract
LBVs are massive evolved stars that suffer sporadic and violent mass-loss events. They have been proposed as the progenitors of some core-collapse SNe, but this idea is still debated due to the lack of direct evidence. Since SNRs can carry in their morphology the fingerprints of the progenitor stars as well as of the inhomogeneous CSM sculpted by the progenitors, the study of SNRs from LBVs could help to place core-collapse SNe in context with the evolution of massive stars. We investigate the physical, chemical and morphological properties of the remnants of SNe originating from LBVs, in order to search for signatures, revealing the nature of the progenitors, in the ejecta distribution and morphology of the remnants. As a template of LBVs, we considered the actual LBV candidate Gal 026.47+0.02. We selected a grid of models, which describe the evolution of a massive star with properties…
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