arXiv · 1112.0822
Evolution of Synchrotron X-rays in Supernova Remnants
Abstract
A systematic study of the synchrotron X-ray emission from supernova remnants (SNRs) has been conducted. We selected a total of 12 SNRs whose synchrotron X-ray spectral parameters are available in the literature with reasonable accuracy, and studied how their luminosities change as a function of radius. It is found that the synchrotron X-ray luminosity tends to drop especially when the SNRs become larger than ~5 pc, despite large scatter. This may be explained by the change of spectral shape caused by the decrease of the synchrotron roll-off energy. A simple evolutionary model of the X-ray luminosity is proposed and is found to reproduce the observed data approximately, with reasonable model parameters. According to the model, the total energy of accelerated electrons is estimated to be 10^(47-48) ergs, which is well below the supernova explosion energy. The maximum energies of accelerated electrons and protons are also discussed.
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Ryoko Nakamura, Aya Bamba, Tadayasu Dotani, Manabu Ishida, Ryo Yamazaki, Kazunori Kohri. 2011-12-05. Evolution of Synchrotron X-rays in Supernova Remnants. https://doi.org/10.1088/0004-637x/746/2/134
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