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The study of filaments by the Doppler backscattering method in the 'Globus-M' tokamak

机译:用多普勒反向散射法研究'Globus-M'托卡马克中的长丝

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Investigation of filamentary structures was performed on the spherical tokamak Globus-M by the Doppler backscattering (DBS) method. Filaments were detected in the H-mode regime both during the edge localized mode event and in the periods between them. They manifested themselves as bursts of quasi-coherent fluctuations (BQFs) of the output signals of the DBS quadrature detector. 'Fo confirm BQF appearing due to backscattering from a moving filament, special experiments were carried out with two DBS systems located at different poloidal angles. Using the new filament research method one could evaluate their velocity, mode number, and radial and poloidal positions. Using this technique, it was possible to estimate the size of the filaments. Experiments have shown that the filaments move predominantly in the direction of the electron diamagnetic drift with a velocity exceeding the velocity of background small-scale fluctuations. Filaments were recorded more frequently when the density gradient on the plasma periphery increased.
机译:通过多普勒反向散射(DBS)方法对球形托卡马克Globus-M进行丝状结构研究。在边缘局部模式事件期间和它们之间的时间段中,在H模式状态下都检测到细丝。它们表现为DBS正交检波器输出信号的准相干波动(BQF)突发。为了确认BQF的出现是由于移动的灯丝向后散射所引起的,对两个位于不同极向角的DBS系统进行了特殊的实验。使用新的细丝研究方法,可以评估它们的速度,模数以及径向和极向位置。使用该技术,可以估计细丝的尺寸。实验表明,灯丝主要在电子反磁漂移的方向上移动,其速度超过背景小尺度起伏的速度。当等离子外围的密度梯度增加时,记录的细丝会更频繁。

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