Numerical Simulations Of Particle Acceleration In Relativistic Shocks With Application To AGN Central Engines

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Numerical modelling is performed for extreme relativistic parallel shocks with upstream Lorentz factor $Γ=50$. Assuming the scattering is either large angle or over pitch angles $\sim Γ^{-1}$, spectral flattening and shock aaceleration speed-up is found. The energy gain for the first shock cycle is $\sim Γ^{2}$. The likely output from relativistic shocks due to the infall from the accretion disk to the AGN black hole is computed. Neutrinos from proton-gamma interactions may be detectable with planned neutrino telescopes.
6 pages, 4 Postscript figures, results presented in "The particles, Fields and Radio Galaxies Workshop", Oxford, UK (2000). Revised version

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