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Euler potentials for two layers with non-constant current densities in the ambient magnetic field aligned to the layers

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    0472000 - ASÚ 2017 RIV DE eng J - Journal Article
    Vandas, Marek - Romashets, E.
    Euler potentials for two layers with non-constant current densities in the ambient magnetic field aligned to the layers.
    Annales Geophysicae. Roč. 34, č. 12 (2016), s. 1165-1173. ISSN 0992-7689. E-ISSN 1432-0576
    R&D Projects: GA ČR(CZ) GA14-19376S
    Institutional support: RVO:67985815
    Keywords : magnetospheric physics * scale birkeland currents * charged particles
    Subject RIV: BN - Astronomy, Celestial Mechanics, Astrophysics
    Impact factor: 1.610, year: 2016

    The Euler potentials for two current layers aligned to an ambient homogeneous magnetic field are found. Previous treatment of such a system assumed constant current density in the layers. However, the magnetic field becomes infinite at the edges. The new approach eliminates this inconsistency by introducing an inhomogeneous current density. Euler potentials are constructed semi-analytically for such a system. Charged-particle motion and trapping in it are examined by this representation. Using Euler potentials, the influence of current sheets of zero and non-zero thicknesses on energetic-particle fluxes is investigated, and characteristic flux variations near the sheets are presented. The results can be applied to Birkeland currents.
    Permanent Link: http://hdl.handle.net/11104/0269359

     
     
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