English

Missing Titanium in the Asymmetric Supernova Remnant W49B

High Energy Astrophysical Phenomena 2024-02-29 v1

Abstract

The progenitor of the W49B supernova remnant is still under debate. One of the candidates is a jet-driven core-collapse supernova. In such a highly asymmetric explosion, a strong α\alpha-rich freezeout is expected in local high entropy regions, which should enrich elements synthesized by the capture of α\alpha-particles such as 44^{44}Ti and 48^{48}Cr (decaying to 44^{44}Ca and 48^{48}Ti, respectively). In the present work, in order to infer the progenitor of the W49B remnant, we constrain the amount of stable Ti (48^{48}Ti) synthesized, using the {\it Suzaku} observation. We found no firm evidence for the Ti line and set the upper limit of MTi/MFe<8.2×M_{\rm Ti}/M_{\rm Fe} < 8.2 \times 104^{-4} (99\% limit using Xspec) and MTi/MFe<1.9×M_{\rm Ti}/M_{\rm Fe} < 1.9 \times 103^{-3} (99\% limit using SPEX), and thus excluded almost all hypernova/jet-driven supernova models. Our results, as complemented by some previous studies, suggest that a Type Ia supernova from a near-MChM_{\rm Ch} (Chandrasekhar mass) white dwarf is the most favorable candidate for the origin of W49B. Future observations with X-ray calorimeter missions, such as XRISM, will give us a stronger constraint on the progenitor.

Keywords

Cite

@article{arxiv.2402.17957,
  title  = {Missing Titanium in the Asymmetric Supernova Remnant W49B},
  author = {Toshiki Sato and Makoto Sawada and Keiichi Maeda and John P. Hughes and Brian J. Williams},
  journal= {arXiv preprint arXiv:2402.17957},
  year   = {2024}
}

Comments

Submitted to ApJ, 7 pages, 3 figures, 1 table

R2 v1 2026-06-28T15:02:40.649Z