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Edge-to-center density ratios in low-temperature plasmas

Authors :
Trevor Lafleur
Pascal Chabert
Centre National d'Études Spatiales [Toulouse] (CNES)
Laboratoire de Physique des Plasmas (LPP)
Université Paris-Sud - Paris 11 (UP11)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Observatoire de Paris
Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-École polytechnique (X)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS)
Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-École polytechnique (X)-Sorbonne Université (SU)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS)
Source :
Plasma Sources Science and Technology, Plasma Sources Science and Technology, 2015, 24 (2), pp.025017. ⟨10.1088/0963-0252/24/2/025017⟩, Plasma Sources Science and Technology, IOP Publishing, 2015, 24 (2), pp.025017. ⟨10.1088/0963-0252/24/2/025017⟩
Publication Year :
2015
Publisher :
HAL CCSD, 2015.

Abstract

International audience; The ion flux leaving a plasma at a boundary can be given by: Γ i = h L n 0 u B , where n 0 is the maximum central plasma density, u B is the Bohm velocity, and h L is the sheath edge-to-center plasma density ratio. Such h L factors have become synonymous with global modeling of plasma discharges, where they play a vital role in the prediction of plasma losses to bounding surfaces. By performing one-dimensional (1D) particle-in-cell simulations of inductively and capacitively coupled plasmas (ICPs and CCPs) over a wide pressure range, we explicitly test the validity of standard heuristic formulae commonly used to estimate h L . The ICP simulation results are found to be in very good agreement, while a large discrepancy is present for the CCP results at high pressures. The onset of this discrepancy is found to be correlated with the bulk-to-sheath edge ionization transition that occurs in CCPs at high pressures. Consequently, global models will strongly underestimate plasma losses in this regime.

Details

Language :
English
ISSN :
09630252 and 13616595
Database :
OpenAIRE
Journal :
Plasma Sources Science and Technology, Plasma Sources Science and Technology, 2015, 24 (2), pp.025017. ⟨10.1088/0963-0252/24/2/025017⟩, Plasma Sources Science and Technology, IOP Publishing, 2015, 24 (2), pp.025017. ⟨10.1088/0963-0252/24/2/025017⟩
Accession number :
edsair.doi.dedup.....65b0f6f663a2e7695ec6bd5cc8e1b764
Full Text :
https://doi.org/10.1088/0963-0252/24/2/025017⟩