ICRF production of plasma with hydrogen minority in Uragan-2M stellarator by two-strap antenna

Author:

Kovtun Yurii1ORCID,Moiseenko Vladimir12ORCID,Lozin Oleksiy1ORCID,Kozulya Mykhailo1ORCID,Pavlichenko Rostislav1ORCID,Shapoval Anatoliy1ORCID,Bondarenko Vladislav1ORCID,Baron Demian1ORCID,Maznichenko Sergiy1ORCID,Korovin Valerii1ORCID,Siusko Yevhen1ORCID,Romanov Vladislav1ORCID,Martseniuk Yurii1ORCID,Krasiuk Alexandr1ORCID,Listopad Viktor1ORCID,Garkusha Igor13ORCID,Alonso Arturo4ORCID,Dinklage Andreas5ORCID,Hartmann Dirk A.5ORCID,Kazakov Yevgen6ORCID,Laqua Heinrich5ORCID,Ongena Jef6ORCID,Stange Torsten5ORCID,Wauters Tom7ORCID

Affiliation:

1. Institute of Plasma Physics of the National Science Center “Kharkiv Institute of Physics and Technology 1 ,” 61108 Kharkiv, Ukraine

2. Ångström Laboratory, Uppsala University 2 , 75104 Uppsala, Sweden

3. V.N. Karazin Kharkiv National University 3 , 61022 Kharkiv, Ukraine

4. Laboratorio Nacional de Fusion, CIEMAT 4 , 28040 Madrid, Spain

5. Max-Planck-Institut für Plasmaphysik 5 , 17491 Greifswald, Germany

6. Laboratory for Plasma Physics, ERM/KMS, TEC Partner 6 , 1000 Brussels, Belgium

7. ITER Organization, Route de Vinon-sur-Verdon 7 , CS 90046, 13067 St. Paul Lez Durance Cedex, France

Abstract

The experiments on medium-size stellarator Uragan-2M (U-2M) in Kharkiv, Ukraine, are carried on in support of the Wendelstein 7-X (W7-X) experimental program. The scenario ion cyclotron frequency range (ICRF) plasma production at the hydrogen minority regime had been experimentally tested on U-2M and was qualified at the Large Helical Device (LHD). The paper presents the results of further research on the ICRF plasma production. The ICRF discharge studies were carried out in a H2 + He mixture with a controlled hydrogen concentration ranging from few percents to 75%. The two-strap like antenna mimicks the W7-X antenna operated in monopole phasing. The applied RF power was in the range of ∼100 kW. Relatively dense plasma of up to Ne ∼ 1019 m−3 was produced near the first harmonic of the hydrogen cyclotron frequency. The maximum temperature of the electrons and ions was not more than a few tens of electron volt. The characteristic features of RF plasma production and the propagation of electromagnetic waves in the experimental conditions are discussed. The experiments on U-2M and LHD indicate that the minority scenario of ICRF plasma production appears to be scalable and could be used in large stellarator machines. This is, in particular, important for the future experiments ICRF production of target plasma in W-7X in conditions where electron cyclotron resonance heating start-up is not possible.

Funder

Euratom Research and Training Programme

Publisher

AIP Publishing

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