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The Influence of Magnetic Turbulence on the Energetic Particle Transport Upstream of Shock Waves
by
Zimbardo, Gaetano
, Prete, Giuseppe
, Pucci, Francesco
, Malara, Francesco
, Perri, Silvia
in
Advanced Composition Explorer
/ Cosmic rays
/ Energetic particles
/ Fluctuations
/ Fluxes
/ Influence
/ Intermittency
/ Interplanetary shock waves
/ interplanetary shocks
/ Interplanetary space
/ Isotropic turbulence
/ Magnetic field
/ Magnetic fields
/ Magnetic properties
/ Magnetic variations
/ Mathematical models
/ Numerical experiments
/ Numerical models
/ Particle settling
/ Particle transport
/ Propagation
/ Properties
/ Sediment transport
/ Shock waves
/ Solar wind
/ Three dimensional models
/ Transport properties
/ Turbulence
/ Turbulence models
/ Upstream
2021
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The Influence of Magnetic Turbulence on the Energetic Particle Transport Upstream of Shock Waves
by
Zimbardo, Gaetano
, Prete, Giuseppe
, Pucci, Francesco
, Malara, Francesco
, Perri, Silvia
in
Advanced Composition Explorer
/ Cosmic rays
/ Energetic particles
/ Fluctuations
/ Fluxes
/ Influence
/ Intermittency
/ Interplanetary shock waves
/ interplanetary shocks
/ Interplanetary space
/ Isotropic turbulence
/ Magnetic field
/ Magnetic fields
/ Magnetic properties
/ Magnetic variations
/ Mathematical models
/ Numerical experiments
/ Numerical models
/ Particle settling
/ Particle transport
/ Propagation
/ Properties
/ Sediment transport
/ Shock waves
/ Solar wind
/ Three dimensional models
/ Transport properties
/ Turbulence
/ Turbulence models
/ Upstream
2021
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The Influence of Magnetic Turbulence on the Energetic Particle Transport Upstream of Shock Waves
by
Zimbardo, Gaetano
, Prete, Giuseppe
, Pucci, Francesco
, Malara, Francesco
, Perri, Silvia
in
Advanced Composition Explorer
/ Cosmic rays
/ Energetic particles
/ Fluctuations
/ Fluxes
/ Influence
/ Intermittency
/ Interplanetary shock waves
/ interplanetary shocks
/ Interplanetary space
/ Isotropic turbulence
/ Magnetic field
/ Magnetic fields
/ Magnetic properties
/ Magnetic variations
/ Mathematical models
/ Numerical experiments
/ Numerical models
/ Particle settling
/ Particle transport
/ Propagation
/ Properties
/ Sediment transport
/ Shock waves
/ Solar wind
/ Three dimensional models
/ Transport properties
/ Turbulence
/ Turbulence models
/ Upstream
2021
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The Influence of Magnetic Turbulence on the Energetic Particle Transport Upstream of Shock Waves
Journal Article
The Influence of Magnetic Turbulence on the Energetic Particle Transport Upstream of Shock Waves
2021
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Overview
Energetic particles are ubiquitous in the interplanetary space and their transport properties are strongly influenced by the interaction with magnetic field fluctuations. Numerical experiments have shown that transport in both the parallel and perpendicular directions with respect to the background magnetic field is deeply affected by magnetic turbulence spectral properties. Recently, making use of a numerical model with three dimensional isotropic turbulence, the influence of turbulence intermittency and magnetic fluctuations on the energetic particle transport was investigated in the solar wind context. Stimulated by this previous theoretical work, here we analyze the parallel transport of supra-thermal particles upstream of interplanetary shock waves by using in situ particle flux measurements; the aim was to relate particle transport properties to the degree of intermittency of the magnetic field fluctuations and to their relative amplitude at the energetic particle resonant scale measured in the same regions. We selected five quasi-perpendicular and five quasi-parallel shock crossings by the ACE satellite. The analysis clearly shows a tendency to find parallel superdiffusive transport at quasi-perpendicular shocks, with a significantly higher level of the energetic particle fluxes than those observed in the quasi-parallel shocks. Furthermore, the occurrence of anomalous parallel transport is only weakly related to the presence of magnetic field intermittency.
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