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Modelling of Voids in Complex Radio Frequency Plasmas

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dc.contributor.author Goedheer, Willem Jan
dc.contributor.author Land, Victor
dc.contributor.author Venema, Jan
dc.identifier.citation W. J. Goedheer, V. Land, and J. Venema, Contrib. Plasma Phys. 49 (4-5), 1990214 (2009) en
dc.identifier.uri http://hdl.handle.net/2104/8012
dc.description.abstract In this paper hydrodynamic and kinetic approaches to model low pressure capacitively coupled complex radiofrequency discharges are discussed and applied to discharges under microgravity. Experiments in the PKENefedov reactor on board the International Space Station, as well as discharges in which gravity is compensated by means of thermophoresis are simulated with a 2-D cylindrically symmetric hydrodynamic model. Kinetic effects are studied with a 1-D Particle-In-Cell plus Monte Carlo model in which capture and scattering by dust grains is included. Simulations with this model address non-local effects and modulated discharges. en
dc.publisher WILEY-VCH en
dc.title Modelling of Voids in Complex Radio Frequency Plasmas en
dc.type Article en
dc.identifier.doi 10.1002/ctpp.200910023
dc.description.keywords Complex plasma en
dc.description.keywords Radio-frequency discharges en
dc.description.keywords Numerical simulation en
dc.description.keywords Void en


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