JWST/MIRI detects the dusty SN1993J about 30 years after explosion
arXiv:2503.12950 · doi:10.1051/0004-6361/202451470
Abstract
Core-collapse supernovae (CCSNe) have long been considered to contribute significantly to the cosmic dust budget. New dust cools quickly and is therefore detectable at mid-infrared (mid-IR) wavelengths. However, before the era of the James Webb Space Telescope (JWST), direct observational evidence for dust condensation was found in only a handful of nearby CCSNe, and dust masses (~10, generally limited to <5 yr and to >500K temperatures) have been 2-3 orders of magnitude smaller than either theoretical predictions or dust amounts found by far-IR/submm observations of Galactic SN remnants and in the very nearby SN 1987A. The combined angular resolution and mid-IR sensitivity of JWST finally allow us to reveal hidden cool (~100-200K) dust reservoirs in extragalactic SNe beyond SN 1987A. Our team received JWST/MIRI time for studying a larger sample of CCSNe to fill the currently existing gap in their dust formation histories. The first observed target of this program is the well-known Type IIb SN~1993J appeared in M81. We generated its spectral energy distribution (SED) from the current JWST/MIRI F770W, F1000W, F1500W, and F2100W fluxes. We fit single- and two-component silicate and carbonaceous dust models to the SED. We found that SN 1993J still contains a significant amount (~0.01 ) of dust ~30 yr after explosion. Comparing these results to those of the analysis of earlier {Spitzer Space Telescope data, we see a similar amount of dust now that was detected ~15-20 yr ago, but at a lower temperature. We also find residual background emission near the SN site (after point-spread-function subtraction on the JWST/MIRI images) that may plausibly be attributed to an IR echo from more distant interstellar dust grains heated by the SN shock-breakout luminosity or ongoing star formation in the local environment.
10 pages, 9 figures, 2 Tables; accepted for publication in A&A
References in corpus (32)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- The Cassiopeia A Supernova was of Type IIB
- The Evolution of Dust in the Early Universe with Applications to the Galaxy SDSS J1148+5251
- Fully-Automated Reduction of Longslit Spectroscopy with the Low Resolution Imaging Spectrometer at Keck Observatory
- Dust and the type II-plateau supernova 2004et
- Condensation of dust in the ejecta of type II-P supernovae
- The dust mass in Cassiopeia A from a spatially resolved Herschel analysis
- The timing and location of dust formation in the remnant of SN 1987A
- Uncovering the Putative B-Star Binary Companion of the SN 1993J Progenitor
- Cassiopeia A: dust factory revealed via submillimetre polarimetry
- Long Term Radio Monitoring of SN 1993J
- Infrared Echoes near the Supernova Remnant Cassiopeia A
- The light curve of SN 1987A revisited: constraining production masses of radioactive nuclides
- Interstellar and Ejecta Dust in the Cas A Supernova Remnant
- Modeling the signatures of interaction in Type II supernovae: UV emission, high-velocity features, broad-boxy profiles
- Endurance of SN 2005ip after a decade: X-rays, radio, and H-alpha like SN 1988Z require long-lived pre-supernova mass loss
- Dust masses for SN 1980K, SN1993J and Cassiopeia A from red-blue emission line asymmetries
- A JWST Survey of the Supernova Remnant Cassiopeia A
- Infrared Echoes Reveal the Shock Breakout of the Cas A Supernova
- The dust content of the Crab Nebula
- The mass, location and heating of the dust in the Cassiopeia A supernova remnant
- JWST NIRSpec observations of Supernova 1987A -- from the inner ejecta to the reverse shock
- The morphing of decay powered to interaction powered Type II supernova ejecta at nebular times
- The Slow Demise of the Long-Lived SN 2005ip
- The Evolution of Dust Opacity in Core Collapse Supernovae and the Rapid Formation of Dust in Their Ejecta
- Final Spitzer IRAC Observations of the Rise and Fall of SN 1987A
- Dust survival rates in clumps passing through the Cas A reverse shock -- II. The impact of magnetic fields
- Evolution of the progenitors of SNe 1993J and 2011dh revealed through late time radio and X-ray studies
- Dust destruction and survival in the Cassiopeia A reverse shock
- Formation, distribution, and IR emission of dust in the clumpy ejecta of Type II-P core-collapse supernovae, in isotropic and anisotropic scenarios
- A Snapshot Survey of Nearby Supernovae with the Hubble Space Telescope
- Rescued from oblivion: detailed analysis of archival {\it Spitzer} data of SN~1993J