A distorted radio shell in the young supernova SN1986J
arXiv:astro-ph/0202514 · doi:10.1046/j.1365-8711.2002.05809.x
Abstract
We report here on 5 GHz global very-long-baseline interferometry (VLBI) observations of SN 1986J, 16 yr after its explosion. We obtained a high-resolution image of the supernova, which shows a distorted shell of radio emission, indicative of a deformation of the shock front. The angular size of the shell is , corresponding to a linear size of for a distance of 9.6 Mpc to NGC 891. The average speed of the shell has decreased from 7400 \kms in 1988.74 down to about in 1999.14, indicative of a mild deceleration in the expansion of SN 1986J. Assuming a standard density profile for the progenitor wind (), the swept-up mass by the shock front is 2.2\Ms. This large swept-up mass, coupled with the mild deceleration suffered by the supernova, suggests that the mass of the hydrogen-rich envelope ejected at explosion was $\ga12$ \Ms. Thus, the supernova progenitor must have kept intact most of its hydrogen-rich envelope by the time of explosion, which favours a single, massive star progenitor scenario. We find a flux density for SN 1986J of 7.2 mJy at the observing frequency of 5 GHz, which results in a radio luminosity of for the frequency range -- Hz (. We detect four bright knots that delineate the shell structure, and an absolute minimum of emission, which we tentatively identify with the centre of the supernova explosion. If this is the case, SN 1986J has then suffered an asymmetric expansion. We suggest that this asymmetry is due to the collision of the supernova ejecta with an anisotropic, clumpy (or filamentary) medium.
To appear in MNRAS (pink pages)
Cited by in corpus (18)
- Revised equipartition & minimum energy formula for magnetic field strength estimates from radio synchrotron observations
- Thermal and non-thermal emission from circumstellar interaction
- LeMMINGs. I. The eMERLIN legacy survey of nearby galaxies. 1.5-GHz parsec-scale radio structures and cores
- A Supernova Factory in the Merger System Arp 299
- Fourier Modeling of the Radio Torus Surrounding Supernova 1987A
- SN 1986J VLBI. The Evolution and Deceleration of the Complex Source and a Search for a Pulsar Nebula
- Radio emission of SN1993J. The complete picture: II. Simultaneous fit of expansion and radio light curves
- SN 1986J VLBI: II. The Evolution of the Shell and the Central Source
- The Nature of SN 1961V
- 8.4GHz VLBI observations of SN2004et in NGC6946
- VLBI observations of SN 2008iz: I. Expansion velocity and limits on anisotropic expansion
- SN 2001em: Not so Fast
- Radio Detection of Supernova 2004ip in the Circumnuclear Region of the Luminous Infrared Galaxy IRAS 18293-3413
- High-resolution observations of SN 2001gd in NGC 5033
- A multi-wavelength view of the central kiloparsec region in the Luminous Infrared Galaxy NGC1614
- The radio evolution of supernova SN2008iz in M82
- Sub-arcsecond Radio Observations of the Dwarf Starburst Galaxy NGC 3077
- Core collapse supernovae and starbursts