Magnetic field generation and particle energization at relativistic shear boundaries in collisionless electron-positron plasmas
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Liang, Edison
Böttcher, Markus
Smith, Ian
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IOP Science
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Using particle-in-cell simulations, we study the kinetic physics of relativistic shear flow in collisionless electron-positron (e+e−) plasmas. We find efficient magnetic field generation and particle energization at the shear boundary, driven by streaming instabilities across the shear interface and sustained by the shear flow. Nonthermal, anisotropic high-energy particles are accelerated across field lines to produce a power-law tail turning over just below the shear Lorentz factor. These results have important implications for the dissipation and radiation of jets in blazars and gamma-ray bursts.
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Liang, E. et al. 2013. Magnetic field generation and particle energization at relativistic shear boundaries in collisionless electron-positron plasmas. Astrophysical journal letters. 766(2): Article no L19. [https://doi.org/10.1088/2041-8205/766/2/L19]
