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Matem. Mod., 2010, Volume 22, Number 5, Pages 45–56 (Mi mm2970)  

This article is cited in 1 scientific paper (total in 1 paper)

The application of the statistical method and finite-difference method for low-temperature plasma diagnostics problem solution by the flat probe with Coulomb collisions

I. A. Kudryavtseva, A. V. Panteleyev

Moscow Aviation Institute (State Technical University)

Abstract: In the article the mathematical model, describing strongly ionized collisional plasma dynamics near the flat probe, is formulated. The mathematical model includes the Fokker–Planck equation and the Poisson equation. Two methods of getting solution are presented. One of these methods is the Monte-Carlo Method, other is combination of the splitting method and the Particle-In-Cell Method.

Keywords: the Monte-Carlo Method, the Particle-In-Cell Method, the splitting method, the probe, the Fokker–Planck equation.

Full text: PDF file (230 kB)
References: PDF file   HTML file
UDC: 533.9:51-7
Received: 07.04.2009

Citation: I. A. Kudryavtseva, A. V. Panteleyev, “The application of the statistical method and finite-difference method for low-temperature plasma diagnostics problem solution by the flat probe with Coulomb collisions”, Matem. Mod., 22:5 (2010), 45–56

Citation in format AMSBIB
\Bibitem{KudPan10}
\by I.~A.~Kudryavtseva, A.~V.~Panteleyev
\paper The application of the statistical method and finite-difference method for low-temperature plasma diagnostics problem solution by the flat probe with Coulomb collisions
\jour Matem. Mod.
\yr 2010
\vol 22
\issue 5
\pages 45--56
\mathnet{http://mi.mathnet.ru/mm2970}


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    Citing articles on Google Scholar: Russian citations, English citations
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    This publication is cited in the following articles:
    1. Kudryavtseva I.A., “Vychislitelnaya model rascheta parametrov nabegayuschego potoka silnoionizovannoi plazmy v pristenochnoi oblasti ploskogo zonda”, Vestnik Moskovskogo aviatsionnogo instituta, 18:6 (2011), 96–101  mathscinet  elib
  • Математическое моделирование
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