Particle-in-cell Monte Carlo simulation has become a very effective tool in exploring processing plasmas and in particular capacitive RF discharges. We describe the conventional particle-in-cell (PIC) simulation and its limitations in terms of computational efficiency, review the implicit subcycling methods used to improve computational efficiency for many problems, and analyse conventional and implicit subcycling PIC simulation performances on an RF discharge model. Implementation of the implicit subcycling scheme in our bounded one-dimensional electrostatic code, PDP1, resulted in an order of magnitude reduction in the simulation run time when the accuracy conditions were satisfied.
机构:Centre de Physique Atomique de Toulouse Unite de Recherche Associee, CNRS, 31062, Toulouse Cedex, Unite de Recherche Associee 277, Universit6 Paul Sabatier
BOEUF, JP
;
PITCHFORD, LC
论文数: 0引用数: 0
h-index: 0
机构:Centre de Physique Atomique de Toulouse Unite de Recherche Associee, CNRS, 31062, Toulouse Cedex, Unite de Recherche Associee 277, Universit6 Paul Sabatier
机构:Centre de Physique Atomique de Toulouse Unite de Recherche Associee, CNRS, 31062, Toulouse Cedex, Unite de Recherche Associee 277, Universit6 Paul Sabatier
BOEUF, JP
;
PITCHFORD, LC
论文数: 0引用数: 0
h-index: 0
机构:Centre de Physique Atomique de Toulouse Unite de Recherche Associee, CNRS, 31062, Toulouse Cedex, Unite de Recherche Associee 277, Universit6 Paul Sabatier