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Experimental observations of modes with geodesic acoustic character from the core to the edge in the TCV tokamak

机译:从核心到TCV Tokamak中核心到边缘的测量力学的实验观察

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The geodesic acoustic mode is a coherently oscillating mode, related to the zonal flows that can regulate turbulence in magnetized toroidal plasmas. Modes possessing geodesic acoustic character have been widely observed in the TCV tokamak. A transition has been observed in the course of a single discharge from a continuum regime to a radially extended single-frequency regime. The mode has been also observed and characterized for the first time in the scrape-off layer, primarily by Langmuir probes, suggesting a particle flow to the edge modulated at the mode frequency. These experimental observations are consistent with nonlinear global gyrokinetic simulations, reported in a companion paper (Merlo et al 2017 Plasma Phys. Control. Fusion). These also suggest a possible coupling with radial avalanche phenomena.
机译:测地声模式是与能够调节磁化环形等离子体中的湍流的区域流动的相干振荡模式。 在TCV Tokamak中广泛观察到具有测地声学特征的模式。 在从连续体制度到径向延伸的单频制度的单个放电过程中已经观察到过渡。 也已经观察到该模式,并在刮削层中首次观察到,主要由Langmuir探针,建议在模式频率上调制到边缘的粒子。 这些实验观察结果与非线性全球热因素模拟一致,在伴侣纸上报道(Merlo等,2017等离子体物理。控制。融合)。 这些还提出了与径向雪崩现象的可能耦合。

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