International audienceA Cartesian-coordinate two-dimensional electrostatic particle-in-cell/Monte Carlo collision (PIC/MCC) plasma simulation code is presented, including a new treatment of charge balance at dielectric boundaries. It is used to simulate an Ar plasma in a symmetric radiofrequency capacitively-coupled parallel-plate reactor with a thick (3.5 cm) dielectric side-wall. The reactor size (12 cm electrode width, 2.5 cm electrode spacing) and frequency (15 MHz) are such that electromagnetic effects can be ignored. The dielectric side-wall effectively shields the plasma from the enhanced electric field at the powered-grounded electrode junction, which has previously been shown to produce locally enhanced plasma density (Dalvie et al...
International audiencePreviously plasma non-uniformities in Capacitively Coupled Plasmas were though...
International audiencePreviously plasma non-uniformities in Capacitively Coupled Plasmas were though...
International audiencePreviously plasma non-uniformities in Capacitively Coupled Plasmas were though...
International audienceA Cartesian-coordinate two-dimensional electrostatic particle-in-cell/Monte Ca...
International audienceA Cartesian-coordinate two-dimensional electrostatic particle-in-cell/Monte Ca...
International audienceA Cartesian-coordinate two-dimensional electrostatic particle-in-cell/Monte Ca...
International audienceA Cartesian-coordinate two-dimensional electrostatic particle-in-cell/Monte Ca...
International audienceA Cartesian-coordinate two-dimensional electrostatic particle-in-cell/Monte Ca...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
International audiencePreviously plasma non-uniformities in Capacitively Coupled Plasmas were though...
International audiencePreviously plasma non-uniformities in Capacitively Coupled Plasmas were though...
International audiencePreviously plasma non-uniformities in Capacitively Coupled Plasmas were though...
International audienceA Cartesian-coordinate two-dimensional electrostatic particle-in-cell/Monte Ca...
International audienceA Cartesian-coordinate two-dimensional electrostatic particle-in-cell/Monte Ca...
International audienceA Cartesian-coordinate two-dimensional electrostatic particle-in-cell/Monte Ca...
International audienceA Cartesian-coordinate two-dimensional electrostatic particle-in-cell/Monte Ca...
International audienceA Cartesian-coordinate two-dimensional electrostatic particle-in-cell/Monte Ca...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
A Cartesian-coordinate two-dimensional electrostatic Particle-in-cell/Monte-Carlo Collision (PIC/MCC...
International audiencePreviously plasma non-uniformities in Capacitively Coupled Plasmas were though...
International audiencePreviously plasma non-uniformities in Capacitively Coupled Plasmas were though...
International audiencePreviously plasma non-uniformities in Capacitively Coupled Plasmas were though...