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Nonlinear response of a neoclassical four-field magnetic reconnection model to localized current drive

机译:新古典四场磁重联模型对局部电流驱动的非线性响应

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In tokamaks magnetic islands arise from an unstable process of tearing and reconnecting of helical field lines across rational surfaces. After a linear stage the magnetic instability develops through three characteristic nonlinear stages where increasingly complex topological alterations occur in the form of the magnetic islands. The problem of response of reconnection process to the injection of an external current suitably localized is addressed using a four-field model in a plane slab plasma, with a novel extension to account consistently of the relevant neoclassical effects, such as bootstrap current and pressure anisotropy. The results found have implications on the interpretation of the possible mechanism of present day experimental results on neoclassical tearing modes as well as on the concepts for their control or avoidance.
机译:在托卡马克中,磁岛起因于贯穿合理表面的螺旋磁场线的撕裂和重新连接的不稳定过程。在线性阶段之后,磁不稳定性会通过三个特征性非线性阶段发展,在此阶段中,越来越复杂的拓扑变化以磁岛的形式发生。使用平面平板等离子体中的四场模型解决了重新连接过程对注入适当局部外部电流的响应问题,并进行了新颖的扩展以始终如一地考虑相关的新古典效应,例如自举电流和压力各向异性。发现的结果对当今关于新古典撕裂模式的实验结果的可能机理的解释及其控制或避免的概念具有意义。

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