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Impact of stochastic magnetic fields on plasma rotation and radial electric fields in the plasma edge of the tokamak TEXTOR

机译:随机磁场对托卡马克TEXTOR等离子体边缘的等离子体旋转和径向电场的影响

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In this contribution we report on spectroscopic measurements of plasma rotation and the radial electric field in the plasma boundary under the operation of the dynamic ergodic divertor in TEXTOR. Under the influence of the stochastic magnetic field we observe an increase of both poloidal and toroidal rotation of carbon nuclei into ion-diamagnetic drift/co-current direction. With static magnetic perturbation the electric field in the ergodic region increases by 10 kV/m and becomes positive. Application of dynamic perturbation leads to a comparable change of the rotation, independent of the direction of the rotation of the DED field and only depending on the degree of ergodization. We introduce a model to explain the experimental findings by the onset of transverse currents in the ergodic region and a subsequent torque onto the plasma. (c) 2007 Published by Elsevier B.V.
机译:在这项贡献中,我们报告了在TEXTOR中的动态遍历偏滤器的作用下,等离子体旋转和等离子体边界中径向电场的光谱测量结果。在随机磁场的影响下,我们观察到碳核向离子-反磁性漂移/并流方向的向极旋转和环形旋转都增加了。随着静磁扰动,遍历区域中的电场增加了10 kV / m,并变为正。动态扰动的应用导致旋转的可比变化,而与DED场的旋转方向无关,并且仅取决于麦迪化程度。我们介绍了一个模型,通过在遍历区域中产生横向电流以及随后施加到等离子体上的扭矩来解释实验结果。 (c)2007年由Elsevier B.V.

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