A JWST Medium Resolution MIRI Spectrum and Models of the Type Ia supernova 2021aefx at +415 d
C. Ashall, P.Hoeflich, E. Baron, M. Shahbandeh, J. M. DerKacy, K., Medler, B. J. Shappee, M. A. Tucker, E. Fereidouni, T. Mera, J. Andrews, D., Baade, K. A. Bostroem, P. J. Brown, C. R. Burns, A. Burrow, A. Cikota, T. de, Jaeger, A. Do, Y. Dong, I. Dominguez, O. Fox, L. Galbany

TL;DR
This paper presents JWST MIRI spectra of the Type Ia supernova 2021aefx at +415 days, analyzing its spectral evolution with models to understand its explosion mechanism and positron transport.
Contribution
It provides the first JWST time series analysis of an SN Ia, combining spectral data with models to constrain explosion parameters and positron transport effects.
Findings
Spectral evolution traces $^{56}$Co decay.
Inner electron capture dominated by gamma-ray energy deposition.
Spectrum features influenced by positron transport and explosion asymmetry.
Abstract
We present a JWST MIRI/MRS spectrum (5-27 m) of the Type Ia supernova (SN Ia), SN 2021aefx at days past -band maximum. The spectrum, which was obtained during the iron-dominated nebular phase, has been analyzed in combination with previous JWST observations of SN 2021aefx, to provide the first JWST time series analysis of an SN Ia. We find the temporal evolution of the [Co III] 11.888 m feature directly traces the decay of Co. The spectra, line profiles, and their evolution are analyzed with off-center delayed-detonation models. Best fits were obtained with White Dwarf (WD) central densities of g cm, a WD mass of M=1.33-1.35M, a WD magnetic field of G, and an off-center deflagration-to-detonation transition at 0.5 seen opposite to the line of sight of…
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Taxonomy
TopicsGamma-ray bursts and supernovae · Pulsars and Gravitational Waves Research
