Hydrogen removal by electron cyclotron wall conditioning with neon gas and its impact of tokamak plasma start-up on the QUEST spherical tokamak

Author:

Fukumoto Masakatsu,Yue QilinORCID,Hanada Kazuaki,Kojima ShinichiroORCID,Nakano Tomohide,Yoshida Naoaki,Ikezoe RyuyaORCID,Nagashima Yoshihiko,Ido TakeshiORCID,Onchi TakumiORCID,Idei HiroshiORCID,Iguchi Hiroki,Komiyama Takumi,Shikama Taiichi,Ejiri Akira,Masuzaki SuguruORCID,Sakamoto Mizuki,Ueda Yoshio,Kuroda KengohORCID,Kono Kaori,Shimabukuro Shun,Higashijima Aki

Abstract

Abstract Electron cyclotron wall conditioning with neon gas (Ne-ECWC) has been performed on the normal conducting spherial tokamak QUEST with metal walls under a trapped particle configuration with O-mode EC waves including X-mode polarization with a frequency of 8.2 GHz and an injection power of 16 kW. The Ne-ECWC removes hydrogen from the wall with small neon retention. The Ne-ECWC decreases hydrogen recycling at the following tokamak discharges, contributing to an improvement of the following tokamak plasma start-up: the plasma current increases and the start-up timing of the plasma current shifts forward. However, defects such as voids and bubbles are formed on tungsten surface exposed to the Ne-ECWC plasma.

Publisher

IOP Publishing

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