Radiation from accelerated particles in relativistic jets with shocks, shear-flow, and reconnection

We investigated particle acceleration and shock structure associated with an unmagnetized relativistic jet propagating into an unmagnetized plasma. Strong magnetic fields generated in the trailing shock contribute to the electrons transverse deflection and acceleration. We have calculated, self-cons...

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Veröffentlicht in:EAS Publications Series 2013, Vol.61, p.177-179
Hauptverfasser: Nishikawa, K.-I., Zhang, B., Dutan, I., Medvedev, M., Hardee, P., Choi, E.J., Min, K.W., Niemiec, J., Mizuno, Y., Nordlund, A., Frederiksen, J.T., Sol, H., Pohl, M., Hartmann, D.H.
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Sprache:eng
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Zusammenfassung:We investigated particle acceleration and shock structure associated with an unmagnetized relativistic jet propagating into an unmagnetized plasma. Strong magnetic fields generated in the trailing shock contribute to the electrons transverse deflection and acceleration. We have calculated, self-consistently, the radiation from electrons accelerated in these turbulent magnetic fields. We found that the synthetic spectra depend on the bulk Lorentz factor of the jet, its temperature and strength of the generated magnetic fields. We have also investigated accelerated electrons in strong magnetic fields generated by kinetic shear (Kelvin-Helmholtz) instabilities. The calculated properties of the emerging radiation will guide our understanding of the complex time evolution and/or spectral structure in gamma-ray bursts, relativistic jets in general, and supernova remnants.
ISSN:1633-4760
1638-1963
DOI:10.1051/eas/1361026