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A numerical model of radio-frequency wall conditioning for steady-state stellarators

  • Yu S. Kulyk
  • , V. Moiseenko
  • , T. Wauters
  • , A. I. Lyssoivan
  • Inst. of Plasma Physics of the National Science Center, Kharkiv Institute of Physics and Technology

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

3 Citations (Scopus)

Résumé

A new self-consistent model of the radio-frequency (RF) plasma production in stellarators in the ion-cyclotron (IC) and electron-cyclotron (EC) frequency ranges is described in this work. This model will be used for RF and ECRH start-up and for numerical analysis of the plasma discharge for the vacuum chamber wall conditioning in stellarator type machines. The self-consistent model includes the system of the particle and energy balance equations and the boundary problem for the Maxwell’s equations. A new feature of this model is account of molecular ions, H2 + and H3 +, in the particle balance equations and possibility to model the ECRH breakdown. PACS: 52.50.Qt, 52.55.Hc.

langue originaleAnglais
Pages (de - à)46-49
Nombre de pages4
journalProblems of Atomic Science and Technology
Volume118
Numéro de publication6
étatPublié - 2018

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