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      A Model of Polarized X-ray Emission from Twinkling Synchrotron Supernova Shells

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          Abstract

          Synchrotron X-ray emission components were recently detected in many young supernova remnants (SNRs). There is even an emerging class - SN1006, RXJ1713.72-3946, Vela Jr, and others - that is dominated by non-thermal emission in X-rays, also probably of synchrotron origin. Such emission results from electrons/positrons accelerated well above TeV energies in the spectral cut-off regime. In the case of diffusive shock acceleration, which is the most promising acceleration mechanism in SNRs, very strong magnetic fluctuations with amplitudes well above the mean magnetic field must be present. Starting from such a fluctuating field, we have simulated images of polarized X-ray emission of SNR shells and show that these are highly clumpy with high polarizations up to 50%. Another distinct characteristic of this emission is the strong intermittency, resulting from the fluctuating field amplifications. The details of this "twinkling" polarized X-ray emission of SNRs depend strongly on the magnetic-field fluctuation spectra, providing a potentially sensitive diagnostic tool. We demonstrate that the predicted characteristics can be studied with instruments that are currently being considered. These can give unique information on magnetic-field characteristics and high-energy particle acceleration in SNRs.

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          Author and article information

          Journal
          15 July 2009
          Article
          10.1111/j.1365-2966.2009.15348.x
          0907.2521
          856ed2d8-8b6e-4efc-8a55-99808486a84e

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          MNRAS v.399, p.1119-1125, (2009)
          7 pages, 8 figures, MNRAS (in press)
          astro-ph.HE

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