© 2017 Author(s). The controlling effect of an electron injection on the electron energy distribution function (EEDF) and on the energetic electron flux, in a capacitive radio-frequency argon plasma, is studied using a one-dimensional particle-in-cell/Monte Carlo collisions model. The input power of the electron beam is as small as several tens of Watts with laboratory achievable emission currents and energies. With the electron injection, the electron temperature decreases but with a significant high energy tail. The electron density, electron temperature in the sheath, and electron heating rate increase with the increasing emission energy. This is attributed to the extra heating of the energetic electrons in the EEDF tail. The non-equilib...
Abstract-In low-pressure capacitively coupled parallel-plate radio-frequency (RF) discharges, such a...
The research presented here focuses on the study of phenomena associated with the sheaths present in...
Publisher's version (útgefin grein)The one-dimensional object-oriented particle-in-cell Monte Carlo ...
We investigate the electron heating dynamics in electropositive argon and helium capacitively couple...
Abstract We investigate the electron heating dynamics in electropositive argon and helium capacitive...
The effect of changing the driving frequency on the plasma density and the electron dynamics in a ca...
International audienceThrough the use of particle-in-cell simulations, we demonstrate that the power...
International audienceThrough the use of particle-in-cell simulations, we demonstrate that the power...
International audienceThrough the use of particle-in-cell simulations, we demonstrate that the power...
International audienceThrough the use of particle-in-cell simulations, we demonstrate that the power...
By using a self-consistent particle-in-cell simulation we investigated the effect of driving freque...
By using a self-consistent particle-in-cell simulation we investigated the effect of driving freque...
By using a self-consistent particle-in-cell simulation we investigated the effect of driving freque...
We investigate the electron heating dynamics in capacitively coupled radio frequency plasmas driven ...
One-dimensional particle-in-cell Monte Carlo collision simulations of magnetized argon plasmas in an...
Abstract-In low-pressure capacitively coupled parallel-plate radio-frequency (RF) discharges, such a...
The research presented here focuses on the study of phenomena associated with the sheaths present in...
Publisher's version (útgefin grein)The one-dimensional object-oriented particle-in-cell Monte Carlo ...
We investigate the electron heating dynamics in electropositive argon and helium capacitively couple...
Abstract We investigate the electron heating dynamics in electropositive argon and helium capacitive...
The effect of changing the driving frequency on the plasma density and the electron dynamics in a ca...
International audienceThrough the use of particle-in-cell simulations, we demonstrate that the power...
International audienceThrough the use of particle-in-cell simulations, we demonstrate that the power...
International audienceThrough the use of particle-in-cell simulations, we demonstrate that the power...
International audienceThrough the use of particle-in-cell simulations, we demonstrate that the power...
By using a self-consistent particle-in-cell simulation we investigated the effect of driving freque...
By using a self-consistent particle-in-cell simulation we investigated the effect of driving freque...
By using a self-consistent particle-in-cell simulation we investigated the effect of driving freque...
We investigate the electron heating dynamics in capacitively coupled radio frequency plasmas driven ...
One-dimensional particle-in-cell Monte Carlo collision simulations of magnetized argon plasmas in an...
Abstract-In low-pressure capacitively coupled parallel-plate radio-frequency (RF) discharges, such a...
The research presented here focuses on the study of phenomena associated with the sheaths present in...
Publisher's version (útgefin grein)The one-dimensional object-oriented particle-in-cell Monte Carlo ...