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- W2014229651 abstract "Monte Carlo calculations of test particle spectra and acceleration times are presented from first-order Fermi particle acceleration for parallel shocks with arbitrary flow velocities and compression ratios r up to seven, shock velocities u1 up to 0.98c, and injection energies ranging from thermal to highly superthermal. Far above the injection energy, the spectra are well-approximated by a power law and the spectra are always harder than for nonrelativistic shocks. Approximate analytic expression are given for the spectral slope as a function of u1 and r. The acceleration time as a function of particle energy is less than for nonrelativistic shocks by a factor that increases with u1 and is about three for u1 = 0.98c. It is confirmed that the spectrum for pitch-angle diffusion is considerably steeper than for large-angle scattering for the same shock parameters." @default.
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- W2014229651 date "1990-09-01" @default.
- W2014229651 modified "2023-10-14" @default.
- W2014229651 title "First-order Fermi particle acceleration by relativistic shocks" @default.
- W2014229651 doi "https://doi.org/10.1086/169156" @default.
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