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28-GHz ECHCD system with beam focusing launcher on the QUEST spherical tokamak

Authors :
Atsushi Fukuyama
Shin Kubo
Takahiro Nagata
Yuichi Takase
M. Sakaguchi
Hiroshi Idei
K. Mishra
Makoto Hasegawa
Akira Ejiri
Masaharu Fukuyama
M. Ono
Yoshihiko Nagashima
Satoru Kobayashi
A. Higashijima
Toru Ii Tsujimura
Shinichiro Kojima
Katsumasa Nakamura
Osamu Watanabe
Tsuyoshi Imai
Kengoh Kuroda
Naoki Matsumoto
Tsuyoshi Kariya
S. Shimabukoro
Takumi Onchi
Kazuaki Hanada
Miu Yunoki
Sadayoshi Murakami
Source :
Fusion Engineering and Design. 146:1149-1152
Publication Year :
2019
Publisher :
Elsevier BV, 2019.

Abstract

New polarizer and launcher systems on a 28-GHz electron-cyclotron (EC) heating and current drive (HCD) system have been developed for non-inductive second-harmonic EC-plasma-current ramp-up in the QUEST spherical tokamak. A launcher system with two quasi-optical mirrors providing beam steering capability was designed to focus the incident beam to a small-sized waist of ∼0.05 m at the second-harmonic EC resonance layer. A relatively large focusing mirror was designed based on a Kirchhoff integral code developed to derive wave solutions. The focusing property of the launched beam was first confirmed with a 3-dimensional (3D) electromagnetic-wave simulator. Focusing characteristics were also checked at low-power test facilities, together with the steering capability. The performance of this launcher system was demonstrated to work as designed, and assembled in the QUEST device. The system was applied to the non-inductive second-harmonic EC plasma ramp-up experiments with no optimization required regarding the incident polarization. The results obtained for the non-inductive plasma ramp-up are also presented.

Details

ISSN :
09203796
Volume :
146
Database :
OpenAIRE
Journal :
Fusion Engineering and Design
Accession number :
edsair.doi...........09da8de6f5b2753da4ff9e470337fb7c
Full Text :
https://doi.org/10.1016/j.fusengdes.2019.02.027