Effects of spatial diffusion in the inner plasma sheet and the structure of the diffusion tensor

A standard pair of equations is used to describe the behaviour of a single monoenergetic particle (proton or electron) population on a geomagnetic flux tube drifting in the magnetosphere. When particle losses from the drifting flux tube into the ionosphere are neglected, this behaviour is adiabatic...

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Main Authors: V. E. Zakharov, M. I. Pudovkin
Format: Article
Language:English
Published: Copernicus Publications
Series:Annales Geophysicae
Online Access:http://www.ann-geophys.net/13/111/1995/angeo-13-111-1995.html
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author V. E. Zakharov
M. I. Pudovkin
author_facet V. E. Zakharov
M. I. Pudovkin
author_sort V. E. Zakharov
collection DOAJ
description A standard pair of equations is used to describe the behaviour of a single monoenergetic particle (proton or electron) population on a geomagnetic flux tube drifting in the magnetosphere. When particle losses from the drifting flux tube into the ionosphere are neglected, this behaviour is adiabatic in a thermodynamic sense. For a population of particles with an isotropic pitch-angle distribution, the generalization of that system of equations is obtained by adding radial and azimuthal spatial diffusion terms. The magnetic field is taken to be dipolar in the inner magnetosphere. The potential electric field is assumed to consist of magnetospheric convection and corotation components. Experimental data are used to estimate the radial equatorial profiles of the plasma sheet pressure. Assuming that the local time and <i>L</i>-shell variations are separable and supposing steady-state conditions, the expressions for the diffusion tensor components are evaluated. The influence of spatial diffusion on the radial and azimuthal profiles of the plasma pressure in the inner plasma sheet is also discussed.
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spelling doaj.art-fde7e33473c74082b2f06e706160cbe62022-12-21T23:15:09ZengCopernicus PublicationsAnnales Geophysicae0992-76891432-0576132111117Effects of spatial diffusion in the inner plasma sheet and the structure of the diffusion tensorV. E. ZakharovM. I. PudovkinA standard pair of equations is used to describe the behaviour of a single monoenergetic particle (proton or electron) population on a geomagnetic flux tube drifting in the magnetosphere. When particle losses from the drifting flux tube into the ionosphere are neglected, this behaviour is adiabatic in a thermodynamic sense. For a population of particles with an isotropic pitch-angle distribution, the generalization of that system of equations is obtained by adding radial and azimuthal spatial diffusion terms. The magnetic field is taken to be dipolar in the inner magnetosphere. The potential electric field is assumed to consist of magnetospheric convection and corotation components. Experimental data are used to estimate the radial equatorial profiles of the plasma sheet pressure. Assuming that the local time and <i>L</i>-shell variations are separable and supposing steady-state conditions, the expressions for the diffusion tensor components are evaluated. The influence of spatial diffusion on the radial and azimuthal profiles of the plasma pressure in the inner plasma sheet is also discussed.http://www.ann-geophys.net/13/111/1995/angeo-13-111-1995.html
spellingShingle V. E. Zakharov
M. I. Pudovkin
Effects of spatial diffusion in the inner plasma sheet and the structure of the diffusion tensor
Annales Geophysicae
title Effects of spatial diffusion in the inner plasma sheet and the structure of the diffusion tensor
title_full Effects of spatial diffusion in the inner plasma sheet and the structure of the diffusion tensor
title_fullStr Effects of spatial diffusion in the inner plasma sheet and the structure of the diffusion tensor
title_full_unstemmed Effects of spatial diffusion in the inner plasma sheet and the structure of the diffusion tensor
title_short Effects of spatial diffusion in the inner plasma sheet and the structure of the diffusion tensor
title_sort effects of spatial diffusion in the inner plasma sheet and the structure of the diffusion tensor
url http://www.ann-geophys.net/13/111/1995/angeo-13-111-1995.html
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