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Impact of charged species transport coefficients on self-bias voltage in an electrically asymmetric RF discharge

  • Institut polytechnique de Paris

Research output: Contribution to journalArticlepeer-review

Abstract

In this paper, we use a fluid model to simulate the excitation of a hydrogen radio-frequency discharge, and employ tailored voltage waveforms to assess the effect of charged species transport properties. Results of the fluid simulation are compared with experimental data and previous results obtained with a hybrid model. Several expressions for electron and ion transport coefficients are compared, and their impact on the self-bias potential is studied. The self-bias is shown to be insensitive to the choice of electron transport coefficients, while remarkably sensitive to variations in ion mobility. Besides, our results show that fluid models can be competitive with hybrid models, provided self-consistent ion transport models and rate constants are used.

Original languageEnglish
Article number055003
JournalPlasma Sources Science and Technology
Volume28
Issue number5
DOIs
Publication statusPublished - 1 May 2019

Keywords

  • asymmetric waveforms
  • electron transport
  • fluid plasma model
  • ion transport
  • self-bias

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