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Ion and electron superdiffusive transport in the interplanetary space
Authors:Silvia Perri  Gaetano Zimbardo
Institution:1. International Space Science Institute, Hallerstrasse 6, CH-3012, Bern, Switzerland;2. Dipartimento di Fisica, Università della Calabria, Ponte P. Bucci Cubo 31C, I-87036, Rende, Italy
Abstract:We study the propagation of energetic particles, accelerated by interplanetary shock waves, upstream of the shock. By using the appropriate propagator, we show that in the case of superdiffusive transport, the time profile of particles accelerated at a traveling planar shock is a power-law with slope 0<γ<10<γ<1, at variance with the exponential profile obtained for normal diffusion. By analyzing data sets of interplanetary shocks in the solar wind observed by the Ulysses and the Voyager 2 spacecraft, we find that the time profiles of energetic electrons correspond to power-laws, with slopes γ?0.30–0.98γ?0.300.98, implying a mean square displacement 〈Δx2〉∝tαΔx2tα, with α=2-γ>1α=2-γ>1, i.e., superdiffusion. In addition, the propagation of ions is also superdiffusive, with α=1.07–1.13α=1.071.13.
Keywords:Energetic particles  Diffusion  Turbulence
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