Explaining supernova remnant G352.7-0.1 as a peculiar type Ia supernova inside a planetary nebula
arXiv:2401.01707 · doi:10.1016/j.newast.2024.102213
Abstract
I identify a point-symmetric morphology of the supernova remnant (SNR) G352.7-0.1 and propose that the outer axially-symmetric structure is the remnant of a common envelope evolution (CEE) of the progenitor system, while the inner structure is the ejecta of a thermonuclear explosion triggered by the merger of a white dwarf (WD) and the core of an asymptotic giant branch (AGB) star. The main radio structure of SNR G352.7-0.1 forms an outer (large) ellipse. The bright X-ray emitting gas forms a smaller ellipse with a symmetry axis inclined to the symmetry axis of the large radio ellipse. The high abundance of iron and the energy of its X-ray lines suggest a type Ia supernova (SN Ia). The massive swept-up gas suggests a relatively massive progenitor system. I propose a scenario with progenitors of initial masses of M1=5-7Mo and M2=4-5 Mo. At a later phase, the WD remnant of the primary star and the AGB secondary star experience a CEE that ejects the circumstellar material that swept up more ISM to form the large elliptical radio structure. An explosion during the merger of the WD with the core of the AGB star triggered a super-Chandrasekhar thermonuclear explosion that formed the inner structure that is bright in X-ray. A tertiary star in the system caused the misalignment of the two symmetry axes. This study adds to the wide variety of evolutionary routes within the scenarios of normal and peculiar SNe Ia.
Accepted for publication in New Astronomy
References in corpus (7)
- Discriminating the Progenitor Type of Supernova Remnants with Iron K-Shell Emission
- Progenitors of type Ia supernovae
- On the fate of the secondary white dwarf in double-degenerate double-detonation Type Ia supernovae
- The fraction of type Ia supernovae exploding inside planetary nebulae (SNIPs)
- The Young Supernova Experiment Data Release 1 (YSE DR1): Light Curves and Photometric Classification of 1975 Supernovae
- A formation scenario for the triple pulsar PSR J0337+1715: breaking a binary system inside a common envelope
- Spatially Resolved Chandra Spectroscopy of Supernova Remnant DEM L71 in the Large Magellanic Cloud