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Ion cyclotron emission in NBI-heated plasmas in theTUMAIM-3M tokamak

机译:TUMAIM-3M托卡马克中NBI加热的等离子体中的离子回旋加速器发射

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摘要

Ion cyclotron emission (ICE) observation in neutral beam injection (NBI)-heated plasma in the TUMAN-3M tokamak is reported. Experiments were performed in deuterium or hydrogen target plasmas, with the neutral heating beam consisting of 60% deuterium and 40% hydrogen atoms accelerated up to 16keV. High-frequency internal magnetic probes were used as a diagnostic tool for ICE detection. In deuterium plasmas, emission with ~13 MHz frequency was observed, with 1-2 ms delay after the NBI pulse front; this frequency corresponds approximately to fundamental ion cyclotron (IC) resonance for hydrogen near the magnetic axis. In hydrogen plasmas, ICE with frequency ~7 MHz was observed. In both cases, the observed frequency scales as IC resonance of minority ions. In deuterium plasmas, the hydrogen minority ICE spectral line was found to consist of several narrow (width ~ 50 kHz) spectral components, typically three or more, with different spacing (of the order of 50-200kHz), and temporal dynamics in synchronicity with sawtooth oscillations. The ICE with the frequency corresponding to IC resonance for majority ions was also observed in several hydrogen and deuterium discharges. Theoretical models developed for the explanation of NBI ICE on other tokamaks are not easily applicable for the phenomena observed on the TUMAN-3M. In pure ohmically heated deuterium and hydrogen plasmas, i.e. in the absence of fast ions, a weak ICE was also observed, with frequency scaling as IC resonance condition in close proximity to the probe location.
机译:在TUMAN-3M托卡马克中,在中性束注入(NBI)加热的等离子体中观察到了离子回旋加速器发射(ICE)。实验是在氘或氢靶等离子体中进行的,由60%氘和40%氢原子组成的中性加热束加速至16keV。高频内部磁探针被用作ICE检测的诊断工具。在氘等离子体中,观察到以〜13 MHz的频率发射,在NBI脉冲前沿之后有1-2 ms的延迟。该频率大致对应于磁轴附近氢的基本离子回旋加速器(IC)共振。在氢等离子体中,观察到频率约为7 MHz的ICE。在这两种情况下,观察到的频率均与少数离子的IC共振成比例。在氘等离子体中,发现少数氢离子ICE谱线由几个窄的(宽〜50 kHz)光谱分量组成,通常是三个或更多,具有不同的间隔(大约50-200kHz),并且时间动态与锯齿振荡。在几个氢和氘的放电中也观察到了与大多数离子的IC共振频率相对应的ICE。为解释NBI ICE在其他托卡马克上开发的理论模型不适用于TUMAN-3M上观察到的现象。在纯欧姆加热的氘和氢等离子体中,即在不存在快速离子的情况下,也观察到了较弱的ICE,并且频率缩放作为靠近探针位置的IC共振条件。

著录项

  • 来源
    《Nuclear fusion》 |2018年第8期|082003.1-082003.10|共10页
  • 作者单位

    Ioffe Institute, 194021, St.-Petersburg, Russian Federation;

    Ioffe Institute, 194021, St.-Petersburg, Russian Federation;

    Ioffe Institute, 194021, St.-Petersburg, Russian Federation;

    Ioffe Institute, 194021, St.-Petersburg, Russian Federation;

    Ioffe Institute, 194021, St.-Petersburg, Russian Federation;

    Ioffe Institute, 194021, St.-Petersburg, Russian Federation;

    Ioffe Institute, 194021, St.-Petersburg, Russian Federation;

    Ioffe Institute, 194021, St.-Petersburg, Russian Federation;

  • 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

    tokamak; fast ions; ion cyclotron emission; ICE;

    机译:托卡马克快速离子离子回旋加速器发射;冰;
  • 入库时间 2022-08-18 04:06:31

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