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Measurements of impulsive reconnection driven by nonlinear Hall dynamics

机译:非线性霍尔动力学驱动的脉冲重新连接的测量

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摘要

The magnetic fields associated with reconnection in the edge of the reversed field pinch configuration have been measured in the Madison Symmetric Torus. The measured magnetic field structure is compared with theoretical predictions computed in both toroidal and cylindrical geometries. The summation of multiple modes has been accomplished to reveal a complex but still coherent edge structure. Key terms of relevant Ohm's law are accessible from magnetic field measurement and reveal the ordering [(1e)J×B?E>ηJ], which implies that two fluid effects are important in the physics governing this reconnection. Further, it is seen that the nonlinear three-wave coupling of the Hall term acts as a driving mechanism for this linearly stable mode.
机译:在麦迪逊对称圆环中已测量了与反向磁场压紧配置边缘重新连接相关的磁场。将测得的磁场结构与在环形和圆柱形几何结构中计算出的理论预测值进行比较。已经完成了多种模式的总和,以揭示一个复杂但仍连贯的边缘结构。相关的欧姆定律的关键术语可从磁场测量中获得,并揭示了[(1 / ne)J×B?E>ηJ]的顺序,这暗示着两种流体效应在控制这种重新连接的物理学中很重要。此外,可以看出霍尔项的非线性三波耦合充当了该线性稳定模式的驱动机制。

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