Title of article
Ion energization by wave particle interactions: Comparison of spectral and particle simulation solutions of the Vlasov equation
Author/Authors
L. Gibelli a، نويسنده , , B.D. Shizgal b، نويسنده , , A.W. Yauc، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2010
Pages
16
From page
2566
To page
2581
Abstract
The evolution of an ensemble of charged particles is given by the Vlasov equation with
a prescribed electromagnetic field. We choose a steady uniform magnetic field and a
perpendicular electric field that oscillates in space and time. We solve the Vlasov equation
with both a Fourier Hermite spectral method and a particle simulation. The aim is to
compare the effectiveness of the two approaches in the description of the ion energization
in a geophysical context. We validate both solutions with an analytic result for a spatially
homogeneous oscillating electric field. We show that the convergence of the Hermite
polynomial expansion is greatly improved with the appropriate velocity scaling. The
relationship between particle dynamics and the features of the velocity distribution
function is discussed. We show that the energization of the ion distribution is related
to stochastic heating arising from the chaotic dynamics associated with the equations of
motion for the particles in the given fields.
Keywords
Collisionless Boltzmann equation , Ion heating , Fourier–Hermite expansion , Stochastic dynamics , Particle simulation
Journal title
Computers and Mathematics with Applications
Serial Year
2010
Journal title
Computers and Mathematics with Applications
Record number
921382
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