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Overview of ICRF plasma production and heating in gas mixtures in stellarators

  • Yurii V. Kovtun
  • , Vladimir E. Moiseenko
  • , Hiroshi Kasahara
  • , Tetsuo Seki
  • , Ryosuke Seki
  • , Shuji Kamio
  • , Kenji Saito
  • , Suguru Masuzaki
  • , Mikiro Yoshinuma
  • , Dirk Hartmann
  • , Jozef Ongena
  • , Yevgen O. Kazakov
  • , Tom Wauters
  • , Andreas Dinklage
  • , Marcin Jakubowski
  • , Kristel Crombé
  • , Igor E. Garkusha
  • Inst. of Plasma Physics of the National Science Center, Kharkiv Institute of Physics and Technology
  • Uppsala University
  • National Institute for Fusion Science
  • University of California, Irvine
  • ITER
  • Max-Planck-Institut für Plasmaphysik

Publikation: Beitrag in FachzeitschriftKonferenzartikelBegutachtung

Abstract

The study of plasma production and heating in the ion cyclotron range of frequencies (ICRF) has a long history in fusion research. The ICRF discharges have been studied in stellarators, tokamaks and mirror devices, mainly. The possibility of efficient additional plasma heating using ICRF is one of the main aims of the studies. Plasma production using ICRF discharges is also studied, but to a lesser extent. For the purpose of wall conditioning in both pure gases and their mixtures has been used with lower RF power level. In support of the ICRF experiments for plasma production at Wendelstein 7-X, studies on the development of an ICRF start-up scenario were initiated on the Uragan-2M (U-2M) stellarator. Experiments with a controlled minority of hydrogen in helium atmosphere showed a significant increase in the resulting plasma density compared with pure helium and pure hydrogen. Then, the ICRF plasma production was demonstrated on the LHD with the scenario based on U-2M experiment. Successful experiments at U-2M and LHD showed that the ICRF start-up scenario can be scaled up to large stellarator devices, producing plasma with favorable parameters from scratch using ICRF only.

OriginalspracheEnglisch
Aufsatznummer02007
FachzeitschriftEPJ Web of Conferences
Jahrgang346
DOIs
PublikationsstatusVeröffentlicht - 7 Jan. 2026
Veranstaltung25th Topical Conference on Radio-Frequency Power in Plasmas, RFPPC 2025 - Schloss Hohenkammer, Deutschland
Dauer: 19 Mai 202522 Mai 2025

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