English

The compact object and innermost ejecta of SN 1987A

High Energy Astrophysical Phenomena 2025-08-06 v1 Astrophysics of Galaxies Solar and Stellar Astrophysics

Abstract

The first JWST observations of SN 1987A provided clear evidence that a compact object is ionizing the innermost ejecta. Here we analyze a second epoch of JWST NIRSpec and MIRI/MRS observations to better characterize the properties of this region, aided by a higher spectral resolving power for the new NIRSpec data. We confirm the presence of the previously identified narrow lines from the central region; [Ar VI] 4.5292 μ\mum, [Ar II] 6.9853 μ\mum, [S IV] 10.5105 μ\mum, and [S III] 18.7130 μ\mum, and also identify similar components in [Ca V] 4.1585 μ\mum, [Cl II] 14.3678 μ\mum, and possibly [Fe II] 1.6440 μ\mum. These lines are blueshifted by \sim -250 km/s, while the emission region is spatially unresolved and located southeast of the center. The offset and blueshift could imply a kick velocity of 510±55510 \pm 55 km/s for the neutron star. We also identify [Ca IV] 3.2068 μ\mum near the center, but it is displaced to the north and has a redshift of 700\sim 700 km/s. We find that scattering by dust in the ejecta with a typical grain size 0.3 μ\sim 0.3\ \mum can explain the [Ca IV] properties and the absence of other narrow lines at shorter wavelengths, while dust absorption is important at λ8 μ\lambda \gtrsim 8\ \mum. Photoionization models for a pulsar wind nebula and a cooling neutron star are both compatible with the observations, with the exception of the [Fe II] feature. The two models primarily differ at short wavelengths, where new lines are expected to emerge over time as the optical depth of dust in the expanding ejecta decreases.

Keywords

Cite

@article{arxiv.2508.03395,
  title  = {The compact object and innermost ejecta of SN 1987A},
  author = {J. Larsson and C. Fransson and P. J. Kavanagh and B. Sargent and M. J. Barlow and M. Matsuura and C. Gall and R. D. Gehrz and N. Habel and A. S. Hirschauer and O. C. Jones and R. P. Kirshner and M. Meixner and S. Rosu and T. Temim},
  journal= {arXiv preprint arXiv:2508.03395},
  year   = {2025}
}

Comments

Accepted for publication in ApJ

R2 v1 2026-07-01T04:35:05.462Z