Expansion of Kes 73, a Shell Supernova Remnant Containing a Magnetar
arXiv:1708.01626 · doi:10.3847/1538-4357/aa830f
Abstract
Of the 30 or so Galactic magnetars, about 8 are in supernova remnants (SNRs). One of the most extreme magnetars, 1E 1841-045, is at the center of the SNR Kes 73 (G27.4+0.0), whose age is uncertain. We measure its expansion using three Chandra observations over 15 yr, obtaining a mean rate of 0.023% +/- 0.002% per yr. For a distance of 8.5 kpc, we obtain a shell velocity of 1100 km/s and infer a blast-wave speed of 1400 km/s. For Sedov expansion into a uniform medium, this gives an age of 1800 yr. Derived emission measures imply an ambient density of about 2 cm and an upper limit on the swept-up mass of about 70 solar masses, with lower limits of tens of solar masses, confirming that Kes 73 is in an advanced evolutionary stage. Our spectral analysis shows no evidence for enhanced abundances as would be expected from a massive progenitor. Our derived total energy is erg, giving a very conservative lower limit to the magnetar's initial period of about 3 ms, unless its energy was lost by non-electromagnetic means. We see no evidence of a wind-blown bubble as would be produced by a massive progenitor, or any evidence that the progenitor of Kes 73/1E 1841-045 was anything but a normal red supergiant producing a Type IIP supernova, though a short-lived stripped-envelope progenitor cannot be absolutely excluded. Kes 73's magnetar thus joins SGR 1900+14 as magnetars resulting from relatively low-mass progenitors.
9 pages, 2 figures, 2 tables, accepted for publication in ApJ
References in corpus (8)
- Supernova remnant energetics and magnetars: no evidence in favour of millisecond proto-neutron stars
- Evolutionary Models for Type Ib/c Supernova Progenitors
- The Distance and Age of the SNR Kes 73 and AXP 1E 1841-045
- A VLT/FLAMES survey for massive binaries in Westerlund 1. IV. Wd1-5 - binary product and a pre-supernova companion for the magnetar CXOU J1647-45?
- Spectroscopic evolution of massive stars on the main sequence
- Comparing supernova remnants around strongly magnetized and canonical pulsars
- Gamma-ray upper limits on magnetars with 6 years of Fermi-LAT observations
- Gamma-ray Emission of the Kes 73/1E 1841-045 Region Observed with the Fermi Large Area Telescope
Cited by in corpus (14)
- Near-infrared [Fe II] and H Emission-line Study of Galactic Supernova Remnants in the First Quadrant
- Where are the magnetar binary companions? Candidates from a comparison with binary population synthesis predictions
- Thermal radio absorption as a tracer of the interaction of SNRs with their environments
- Probing the Innermost Ejecta Layers in SNR Kes 75: Implications for the Supernova Progenitor
- A Grid of Core-Collapse Supernova Remnant Models I: The Effect of Wind-Driven Mass-Loss
- From Supernova to Remnant: Tracking the Evolution of the Oldest Known X-ray Supernovae
- Searching for Magnetar Binaries Disrupted by Core-Collapse Supernovae
- A Study of Fermi-LAT GeV gamma-ray Emission towards the Magnetar-harboring Supernova Remnant Kesteven 73 and Its Molecular Environment
- Neutron stars: Observational diversity and evolution
- The Galactic population of magnetars : a simulation-based inference study
- An Exploration of X-ray Supernova Remnants in the Milky Way and Nearby Galaxies
- The infrared counterpart and proper motion of magnetar SGR0501+4516
- On the acceleration of cosmic rays at the post-adiabatic shocks of supernova remnants
- Broadband radio study of the supernova remnant Kes 73