A Suitable Boundary Condition for Bounded Plasma Simulation without Sheath Resolution

We have developed a technique that allows for a sheath boundary layer without having to resolve the inherently small space and time scales of the sheath region. We refer to this technique as the logical sheath boundary condition. This boundary condition, when incorporated into a direct-implicit part...

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Veröffentlicht in:Journal of computational physics 1993-01, Vol.104 (1), p.41-49
Hauptverfasser: Parker, S.E., Procassini, R.J., Birdsall, C.K., Cohen, B.I.
Format: Artikel
Sprache:eng
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Zusammenfassung:We have developed a technique that allows for a sheath boundary layer without having to resolve the inherently small space and time scales of the sheath region. We refer to this technique as the logical sheath boundary condition. This boundary condition, when incorporated into a direct-implicit particle code, permits large space- and time-scale simulations of bounded systems, which would otherwise be impractical on current supercomputers. The lack of resolution of the collector sheath potential drop obtained from conventional implicit simulations at moderate values of ωpe Δt and Δ z/ λDe provides the motivation for the development of the logical sheath boundary condition. The algorithm for use of the logical sheath boundary condition in a particle simulation is presented. Results from simulations which use the logical sheath boundary condition are shown to compare reasonably well with those from an analytic theory and simulations in which the sheath is resolved.
ISSN:0021-9991
1090-2716
DOI:10.1006/jcph.1993.1005