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Critical issues highlighted by collective Thomson scattering below electron cyclotron resonance in FTU

机译:FTU中电子回旋共振下方的集体汤姆森散射突出显示了关键问题

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摘要

Strong anomalous spectra were systematically observed in collective Thomson scattering (CTS) at 140 GHz in the high-field tokamak FTU, a proof-of-principle experiment of CTS on thermal density fluctuations performed with propagation below electron cyclotron (EC) resonance with the final aim of demonstrating high-density CTS in the extraordinary mode. Following the results of two experimental campaigns expressly performed to investigate them, these spectra are ascribed to a gyrotron perturbation caused by a back-reflected signal originating in the beam injection port, where the electron cyclotron layer, the upper-hybrid layer and the right-handed cutoff layer unavoidably crossed by the probing beam are activated by a breakdown plasma sustained by the beam itself. The degree of generality ascribable to our results and the constraints they set on present and future CTS experiments with propagation below electron cyclotron resonance are discussed. A viable solution in terms of a transmit antenna robust against the risk of gyrotron perturbation is suggested.
机译:在高场托卡马克FTU中在140 GHz的集体Thomson散射(CTS)中系统地观察到强异常光谱,这是CTS进行的热密度波动的原理性实验,其在电子回旋加速器(EC)共振以下传播并最终传播。目的是在非常规模式下演示高密度CTS。根据明确进行的两次实验研究的结果,这些光谱归因于回旋扰动,该回旋扰动是由束流注入口产生的回射信号引起的,其中电子回旋加速器层,上混合层和右回旋层不可避免地被探测束穿过的交割截止层被束本身维持的击穿等离子体激活。讨论了归因于我们的结果的普遍程度,以及它们对当前和未来在电子回旋共振以下传播的CTS实验设置的约束。就发射天线而言,提出一种可行的解决方案,可以抵抗回旋加速器摄动的风险。

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