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Fast response of electron-scale turbulence to auxiliary heating cessation in National Spherical Torus Experiment

机译:国家球形圆环实验中电子尺度湍流对辅助加热停止的快速响应

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In this letter, we report the first observation of the fast response of electron-scale turbulence to auxiliary heating cessation in National Spherical Torus eXperiment [Ono et al., Nucl. Fusion 40, 557 (2000)]. The observation was made in a set of RF-heated L-mode plasmas with toroidal magnetic field of 0.55 T and plasma current of 300 kA. It is observed that electron-scale turbulence spectral power (measured with a high-k collective microwave scattering system) decreases significantly following fast cessation of RF heating that occurs in less than 200 mu s. The large drop in the turbulence spectral power has a short time delay of about 1-2 ms relative to the RF cessation and happens on a time scale of 0.5-1 ms, much smaller than the energy confinement time of about 10 ms. Power balance analysis shows a factor of about 2 decrease in electron thermal diffusivity after the sudden drop of turbulence spectral power. Measured small changes in equilibrium profiles across the RF cessation are unlikely able to explain this sudden reduction in the measured turbulence and decrease in electron thermal transport, supported by local linear stability analysis and both local and global nonlinear gyrokinetic simulations. The observations imply that nonlocal flux-driven mechanism may be important for the observed turbulence and electron thermal transport. (C) 2015 AIP Publishing LLC.
机译:在这封信中,我们报道了国家球形圆环实验[Ono等人,Nucl.Natl.Acad.Sci.USA,90:1877,1992]中电子尺度湍流对辅助加热停止的快速响应的首次观察。 Fusion 40,557(2000)]。在一组具有0.55 T环形磁场和300 kA等离子体电流的RF加热L型等离子体中进行了观察。可以观察到,在不到200μs的时间内快速停止RF加热后,电子级湍流谱功率(用高k集合微波散射系统测量)显着降低。相对于RF停止,湍流频谱功率的大幅度下降具有大约1-2 ms的短时间延迟,并且发生在0.5-1 ms的时间范围内,比大约10 ms的能量限制时间小得多。功率平衡分析表明,湍流谱功率突然下降后,电子热扩散率降低了约2倍。在局部线性稳定性分析以及局部和全局非线性陀螺动力学模拟的支持下,在整个射频停止过程中,所测得的平衡分布中的微小变化不可能解释所测湍流的这种突然减小和电子热传递的减小。观察结果表明,非局部通量驱动机制对于观察到的湍流和电子热传递可能很重要。 (C)2015 AIP Publishing LLC。

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