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Forced magnetic reconnection and field penetration of an externally applied rotating helical magnetic field in the TEXTOR tokamak

机译:TEXTOR托卡马克中外部施加的旋转螺旋磁场的强制磁重连接和磁场穿透

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摘要

The magnetic field penetration process into a magnetized plasma is of basic interest both for plasma physics and astrophysics. In this context special measurements on the field penetration and field amplification are performed by a Hall probe on the dynamic ergodic divertor (DED) on the TEXTOR tokamak and the data are interpreted by a two-fluid plasma model. It is observed that the growth of the forced magnetic reconnection by the rotating DED field is accompanied by a change of the plasma fluid rotation. The differential rotation frequency between the DED field and the plasma plays an important role in the process of the excitation of tearing modes. The momentum input from the rotating DED field to the plasma is interpreted by both a ponderomotive force at the rational surface and a radial electric field modified by an edge ergodization.
机译:磁场渗透到磁化等离子体中的过程对于等离子体物理学和天体物理学都具有基本意义。在这种情况下,对场穿透和场放大的特殊测量是通过在TEXTOR tokamak上的动态遍历偏滤器(DED)上使用霍尔探针进行的,并且数据由双流体等离子体模型解释。可以观察到,旋转的DED场引起的强制磁连接的增长伴随着等离子体流体旋转的变化。 DED场与等离子体之间的旋转频率差异在激发撕裂模的过程中起着重要作用。从旋转的DED场输入到等离子体的动量既可以通过有理表面的质动力和通过边缘变质作用修改的径向电场来解释。

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