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- W4377014655 abstract "Cyclotron autoresonance acceleration has been recently advanced as a potential mechanism for accelerating nuclei to ZeV energies (1 ZeV = 1021 eV). All results have been based on single- and many-particle calculations employing analytic solutions to the relativistic equations of motion in the combined magnetic and radiation fields, excluding effects related to the particle-particle interactions. Here, results from preliminary many-particle calculations and preliminary Particle-In-Cell (PIC) simulations, are presented which lend support to the single-particle investigations. Each single-particle result is found to lie well within one standard deviation about the ensemble average obtained from the corresponding many-particle calculation. The PIC simulations show that, even for number densities far exceeding those employed in the non-interacting case, the energy gain drops markedly due to the collective effects, over the first ∼8 mm of the acceleration length. Together with the substantial attenuation, this finding supports the conclusion that the particle-particle interaction effects can be negligibly small over acceleration lengths of typically many kilometers." @default.
- W4377014655 created "2023-05-19" @default.
- W4377014655 creator A5010847107 @default.
- W4377014655 creator A5033830330 @default.
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- W4377014655 date "2023-08-01" @default.
- W4377014655 modified "2023-10-16" @default.
- W4377014655 title "Investigation of the collective effects in the cosmic Zevatron based on cyclotron auto-resonance by preliminary particle-in-cell simulations" @default.
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- W4377014655 doi "https://doi.org/10.1016/j.physleta.2023.128918" @default.
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