Radio-Continuum Emission From The Young Galactic Supernova Remnant G1.9+0.3
Abstract
We present an analysis of a new Australia Telescope Compact Array (ATCA) radio-continuum observation of supernova remnant (SNR) G1.9+0.3, which at an age of 18125 years is the youngest known in the Galaxy. We analysed all available radio-continuum observations at 6-cm from the ATCA and the Very Large Array. Using this data we estimate an expansion rate for G1.9+0.3 of 0.563%0.078% per year between 1984 and 2009. We note that in the 1980's G1.9+0.3 expanded somewhat slower (0.484% per year) than more recently (0.641% per year). We estimate that the average spectral index between 20-cm and 6-cm, across the entire SNR is which is typical for younger SNRs. At 6-cm, we detect an average of 6% fractionally polarised radio emission with a peak of 17%3%. The polarised emission follows the contours of the strongest of X-ray emission. Using the new equipartition formula we estimate a magnetic field strength of BG, which to date, is one of the highest magnetic field strength found for any SNR and consistent with G1.9+0.3 being a very young remnant. This magnetic field strength implies a minimum total energy of the synchrotron radiation of E 1.810 ergs.
Keywords
Cite
@article{arxiv.0806.3605,
title = {Radio-Continuum Emission From The Young Galactic Supernova Remnant G1.9+0.3},
author = {A. Y. De Horta and M. D. Filipović and E. J. Crawford and F. H. Stootman and T. G. Pannuti and L. M. Bozzetto and J. D. Collier and E. R. Sommer and A. R. Kosakowski},
journal= {arXiv preprint arXiv:0806.3605},
year = {2015}
}
Comments
As accepted by Serbian Astronomical Journal