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Electron heating of over-dense plasma with dual-frequency electron cyclotron waves in fully non-inductive plasma ramp-up on the QUEST spherical tokamak

机译:在QUEST球形托卡马克上用完全非感应等离子体加速中的双频电子回旋波对超稠等离子体进行电子加热

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摘要

A 28 GHz system with a high-power gyrotron tube has been used for the QUEST spherical tokamak to form an over-dense plasma for electron Bernstein wave (EBW) heating and current drive with an 8.2 GHz-wave. Non-inductive high-density plasma ramp-up experiments with dual-frequency (dual-f) electron cyclotron (EC) (8.2 GHz and 28 GHz) waves were conducted. A spontaneous density jump (SDJ) to an over-dense state was first observed as a bifurcation phenomenon in the dual-f wave experiment. The over-dense plasma on the 8.2 GHz wave was non-inductively ramped up to 25 kA, and was maintained for 0.4 s under stable plasma equilibrium after two such jumps in one shot. Heating to mildly energetic electrons and bulk electrons was observed even in the over-dense region. The electrostatic EBW heating effect on the mildly energetic electrons in the over-dense region is assessed following a dispersion analysis of the 8.2 GHz wave. The bulk electron heating effect observed is explained as heat exchange from mildly energetic electrons heated by the electrostatic EBW. Remarkably, a high hard-x-ray-radiation temperature of similar to 500 keV was also observed in tangential viewing for current-carrying electrons in the over-dense core region. Synergetic heating from the overlap of different 28 GHz EC harmonic resonances as well as higher harmonic heating is discussed for maintaining the highly energetic electrons in the over-dense core region. In addition, the SDJ process and mechanism are considered based on the discussion of the electron heating effects with the 8.2 GHz wave.
机译:QUEST球形托卡马克已使用具有大功率回旋管的28 GHz系统形成超密度等离子体,用于电子伯恩斯坦波(EBW)加热和8.2 GHz波的电流驱动。进行了双频(双f)电子回旋加速器(EC)(8.2 GHz和28 GHz)波的无感高密度等离子体加速实验。在双f波实验中,首先观察到自发的密度跃迁(SDJ)为分叉现象。一次两次跳跃后,在8.2 GHz波上的过密度等离子体非感应地上升到25 kA,并在稳定的等离子体平衡下保持0.4 s。即使在过密的区域,也观察到加热到适度的高能电子和体电子。在对8.2 GHz波进行色散分析之后,评估了对过密度区域中的轻度高能电子的静电EBW加热效果。观察到的体电子加热效应解释为由静电EBW加热的轻度高能电子进行的热交换。值得注意的是,在超密度核心区中载流电子的切向观察中,也观察到了接近500 keV的高硬x射线辐射温度。讨论了不同28 GHz EC谐波谐振重叠产生的协同加热以及高次谐波加热,以将高能电子保持在高密度铁芯区域。此外,基于对8.2 GHz波的电子加热效应的讨论,考虑了SDJ的过程和机理。

著录项

  • 来源
    《Nuclear fusion》 |2020年第1期|016030.1-016030.13|共13页
  • 作者

  • 作者单位

    Kyushu Univ Res Inst Appl Mech Kasuga Fukuoka 8168580 Japan;

    Kyushu Univ Interdisciplinary Grad Sch Engn Sci Kasuga Fukuoka 8168580 Japan|Inst Plasma Res Gandhinagar 382428 India;

    Univ Tsukuba Plasma Res Ctr Tsukuba Ibaraki 3058577 Japan;

    Princeton Plasma Phys Lab POB 451 Princeton NJ 08543 USA;

    Univ Tokyo Dept Complex Sci & Engn Kashiwa Chiba 2778561 Japan;

    Chinese Acad Sci Inst Plasma Phys Hefei 230031 Peoples R China;

    Kyushu Univ Res Inst Appl Mech Kasuga Fukuoka 8168580 Japan|Natl Inst Fus Sci Toki Gifu 5095292 Japan;

    Kyoto Univ Dept Nucl Engn Kyoto 6158540 Japan;

    Natl Inst Fus Sci Toki Gifu 5095292 Japan;

    Natl Inst Quantum & Radiol Sci & Tech Naka Ibaraki 3110193 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    spherical tokamak; electron cyclotron heating and current drive; electron Bernstein wave heating and current drive; non-inductive plasma startup;

    机译:球形托卡马克电子回旋加速器加热和电流驱动;电子伯恩斯坦波加热和电流驱动;无感等离子体启动;
  • 入库时间 2022-08-18 05:18:52

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