Near-infrared evolution of the equatorial ring of SN 1987A
arXiv:2301.00172 · doi:10.1051/0004-6361/202245829
Abstract
We use adaptive-optics imaging and integral field spectroscopy from the Very Large Telescope, together with images from the \emph{Hubble Space Telescope}, to study the near-infrared (NIR) evolution of the equatorial ring (ER) of SN~1987A. We study the NIR line and continuum flux and morphology over time in order to lay the groundwork for \emph{James Webb Space Telescope} observations of the system. We also study the differences in the interacting ring structure and flux between optical, NIR and other wavelengths, and between line and continuum emission, to constrain the underlying physical processes. Mostly the evolution is similar in the NIR and optical. The morphology of the ER has been skewed toward the west side (with roughly 2/3 of the NIR emission originating there) since around 2010. A steady decline in the ER flux, broadly similar to the MIR and the optical, is ongoing since roughly this time as well. The expansion velocity of the ER hotspots in the NIR is fully consistent with the optical. However, continuum emission forms roughly 70 per cent of the NIR luminosity, and is relatively stronger outside the hotspot-defined extent of the ER than the optical emission or NIR line emission since 2012--2013, suggesting a faster-expanding continuum component. We find that this outer NIR emission can have a significant synchrotron contribution. Even if emission from hot (2000~K) dust is dominant within the ER, the mass of this dust must be vanishingly small (a few ~M) compared to the total dust mass in the ER (~M) to account for the observed flux. The NIR continuum emission, however, expands slower than the more diffuse 180-K dust emission that dominates in the MIR, indicating a different source, and the same hot dust component cannot account for the -band emission.
17 pages, 17 figures. Accepted for publication in Astronomy & Astrophysics
References in corpus (19)
- A distance to the Large Magellanic Cloud that is precise to one per cent
- A stubbornly large mass of cold dust in the ejecta of Supernova 1987A
- Dust yields in clumpy SN shells: SN 1987A revisited
- High angular resolution ALMA images of dust and molecules in the SN 1987A ejecta
- Chandra Observes the End of an Era SN 1987A
- The Destruction of the Circumstellar Ring of SN 1987A
- Three-dimensional distribution of ejecta in Supernova 1987A at 10 000 days
- Spectral and morphological analysis of the remnant of Supernova 1987A with ALMA & ATCA
- Time evolution of the line emission from the inner circumstellar ring of SN 1987A and its hot spots
- High-resolution radio observations of SNR 1987A at high frequencies
- The matter beyond the ring: the recent evolution of SN 1987A observed by the Hubble Space Telescope
- JWST NIRSpec observations of Supernova 1987A -- from the inner ejecta to the reverse shock
- Thermal Emission and Radioactive Lines, but No Pulsar, in the Broadband X-Ray Spectrum of Supernova 1987A
- Final Spitzer IRAC Observations of the Rise and Fall of SN 1987A
- Expected gamma-ray emission of supernova remnant SN 1987A
- Atacama Compact Array Observations of the Pulsar-Wind Nebula of SNR 0540-69.3
- The morphology of the ejecta of SN 1987A at 31 years from 1150 to 10000 Å
- Mid-infrared imaging of Supernova 1987A
- Polarized radio emission unveils the structure of the pre-supernova circumstellar magnetic field and the radio emission in SN1987A