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Experimental observation of turbulence transition and a critical gradient threshold for trapped electron mode in tokamak plasmas

机译:托卡马克等离子体中捕获电子模式的湍流过渡和临界梯度阈值的实验观察

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In HL-2A and J-TEXT ohmic confinement regimes, an electrostatic turbulence with quasi-coherent characteristics in spectra of density fluctuations was observed by multi-channel microwave reflectometers. These quasi-coherent modes (QCMs) were detectable in a large plasma region (r/a similar to 0.3 - 0.8). The characteristic frequencies of QCMs were in the range of 30-140 kHz. The mode is rotated in the electron diamagnetic direction. In the plasmas with QCMs, trapped electron mode (TEM) was predicted to be unstable by gyrokinetic simulations. The combined experimental results show that the TEM is survived in the linear ohmic confinement regime of plasmas. The quasi-coherent TEM was replaced by broad-band fluctuations when the plasma transits from linear to saturated ohmic confinement regime. The observation was strongly related to the turbulence transition from TEM to ion temperature gradient mode. A critical gradient threshold for TEM excitation in electron temperature gradient was directly found. The effect of TEM on density profile peaking was presented. Published by AIP Publishing.
机译:在HL-2A和J-TEXT欧姆约束条件下,通过多通道微波反射计观察到了在密度波动光谱中具有准相干特性的静电湍流。这些准相干模式(QCM)在较大的等离子体区域(r / a类似于0.3-0.8)中可以检测到。 QCM的特征频率在30-140 kHz的范围内。该模式沿反磁性电子方向旋转。在具有QCM的等离子体中,通过动态动力学模拟预测了陷阱电子模式(TEM)不稳定。组合实验结果表明,TEM在等离子体的线性欧姆约束机制中得以幸存。当等离子体从线性转变为饱和的欧姆约束机制时,准相干TEM被宽带波动取代。该观察结果与从TEM到离子温度梯度模式的湍流转变密切相关。直接找到电子温度梯度中TEM激发的临界梯度阈值。提出了TEM对密度分布峰的影响。由AIP Publishing发布。

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