paper

A JWST/MIRI Study of Dust in a Sample of Normal Type IIP Core Collapse Supernovae

arXiv:2608.16979

Abstract

Core collapse supernovae (CCSNe) are invoked as major dust producers in the early Universe, yet the amount of dust they form, the timescale over which it grows, and the physical conditions that regulate the yield remain uncertain. We present a detailed JWST/MIRI mid-infrared (MIR) imaging census of 11 nearby Type IIP CCSNe spanning 1-7 yr after explosion, investigating dust emission across the different phases of their evolution. The spectral energy distributions show a coherent evolution from hot (1500 K), 5-8 m emission at 400 d to prominent 10 and 18 m emission features at later epochs (600-2500 d). The cool dust temperatures range from to K and dust masses from to . The current sample shows no statistically significant correlation between measured dust mass and peak luminosity, plateau duration, or explosion energy. SNe with early high ionization features, indicative of confined CSM, are often among the dust-rich objects in the sample. The measured 1-7 yr dust yields are insufficient to account for dust in typical galaxies, but support a role for CCSNe as producers of seed dust for subsequent grain growth.

Submitted to ApJ. Comments are welcome