The Vlasov equation with strong magnetic field and oscillating electric field as a model for isotop resonant separation

We study the qualitative behavior of solutions to the Vlasov equation with strong external magnetic field and oscillating electric field. This model is relevant to the understanding of isotop resonant separation. We show that the effective equation is a kinetic equation with a memory term. This memo...

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Main Authors: Emmanuel Frenod, Frederique Watbled
Format: Article
Language:English
Published: Texas State University 2002-01-01
Series:Electronic Journal of Differential Equations
Subjects:
Online Access:http://ejde.math.txstate.edu/Volumes/2002/06/abstr.html
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spelling doaj-4809f2428fa146d59b6c32cb2f33eb542020-11-25T01:02:11ZengTexas State UniversityElectronic Journal of Differential Equations1072-66912002-01-01200206120The Vlasov equation with strong magnetic field and oscillating electric field as a model for isotop resonant separationEmmanuel FrenodFrederique WatbledWe study the qualitative behavior of solutions to the Vlasov equation with strong external magnetic field and oscillating electric field. This model is relevant to the understanding of isotop resonant separation. We show that the effective equation is a kinetic equation with a memory term. This memory term involves a pseudo-differential operator whose kernel is characterized by an integral equation involving Bessel functions. The kernel is explicitly given in some particular cases. http://ejde.math.txstate.edu/Volumes/2002/06/abstr.htmlVlasov equationHomogenizationTwo-scale convergenceMemory effectsPseudo-differential equationsIsotop separation.
collection DOAJ
language English
format Article
sources DOAJ
author Emmanuel Frenod
Frederique Watbled
spellingShingle Emmanuel Frenod
Frederique Watbled
The Vlasov equation with strong magnetic field and oscillating electric field as a model for isotop resonant separation
Electronic Journal of Differential Equations
Vlasov equation
Homogenization
Two-scale convergence
Memory effects
Pseudo-differential equations
Isotop separation.
author_facet Emmanuel Frenod
Frederique Watbled
author_sort Emmanuel Frenod
title The Vlasov equation with strong magnetic field and oscillating electric field as a model for isotop resonant separation
title_short The Vlasov equation with strong magnetic field and oscillating electric field as a model for isotop resonant separation
title_full The Vlasov equation with strong magnetic field and oscillating electric field as a model for isotop resonant separation
title_fullStr The Vlasov equation with strong magnetic field and oscillating electric field as a model for isotop resonant separation
title_full_unstemmed The Vlasov equation with strong magnetic field and oscillating electric field as a model for isotop resonant separation
title_sort vlasov equation with strong magnetic field and oscillating electric field as a model for isotop resonant separation
publisher Texas State University
series Electronic Journal of Differential Equations
issn 1072-6691
publishDate 2002-01-01
description We study the qualitative behavior of solutions to the Vlasov equation with strong external magnetic field and oscillating electric field. This model is relevant to the understanding of isotop resonant separation. We show that the effective equation is a kinetic equation with a memory term. This memory term involves a pseudo-differential operator whose kernel is characterized by an integral equation involving Bessel functions. The kernel is explicitly given in some particular cases.
topic Vlasov equation
Homogenization
Two-scale convergence
Memory effects
Pseudo-differential equations
Isotop separation.
url http://ejde.math.txstate.edu/Volumes/2002/06/abstr.html
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