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首页> 外文期刊>Contributions to Plasma Physics >Collective Thomson Scattering of 77 GHz High-Power ECRH Beam in LHD
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Collective Thomson Scattering of 77 GHz High-Power ECRH Beam in LHD

机译:LHD中77 GHz大功率ECRH光束的集体汤姆森散射

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摘要

The measurement of the ion velocity distribution is especially important in reactor relevant plasmas. The collective Thomson scattering (CTS) is one of the most promising methods for evaluating the ion velocity distribution function. In spite of its potential, this method had long been suffered from the absence of adequate power sources. Recent development in the higher power, and higher frequency range of the gyrotron and the transmission technique enabled to realize the measurement of not only the bulk but also high energy component of the ion velocity distribution function. One of the newly installed 77 GHz gyrotrons in LHD that can generate more than 1MW over 5 s and is connected to one of the Gaussian mirror beam launching antenna sets is used as a probing beam for CTS. A heterodyne receiver system of a fundamental mixer with fixed frequency local oscillator was installed on the upstream of the transmission line. The probe beam is 100% power modulated at 50 Hz to separate the scattering component from background ECE. Signals that can be attributed to the CTS were obtained and the analysis method of these data are developed.
机译:离子速度分布的测量在与反应器有关的等离子体中尤其重要。集体汤姆逊散射(CTS)是评估离子速度分布函数的最有前途的方法之一。尽管有潜力,但长期以来由于缺乏足够的电源而遭受了这种方法的困扰。回旋加速器的更高功率和更高频率范围的最新发展以及传输技术使得不仅可以测量离子速度分布函数的体积而且还可以测量其高能量分量。在LHD中新安装的77 GHz旋流器之一,可以在5 s内产生超过1MW的功率,并连接到高斯镜束发射天线组之一,用作CTS的探测束。具有固定频率本机振荡器的基本混频器的外差接收器系统安装在传输线的上游。探测光束以50 Hz进行100%功率调制,以将散射分量与背景ECE分开。获得了可归因于CTS的信号,并开发了这些数据的分析方法。

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