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The coupling of shear and fast Alfven waves at a magnetic X-point

机译:切变和快速Alfven波在磁X点处的耦合

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The coupling of shear and fast Alfven waves in the vicinity of a magnetic X-point is studied for the case in which a weak longitudinal guide field B-zo is presents with variations in the longitudinal direction and plasma pressure effects neglected. It is shown that an analytical solution for the shear wave in the limit of ideal magnetohydrodynamics (MHD) and B-zo = 0 exhibits phase mixing and equilibration of the field and kinetic energy at a rate that increases with the spatial extent of the initial disturbance. Equations describing perturbatively the pumping of fast waves by shear waves in the presence of finite B-z0 are derived and solved numerically. taking into account resistivity and electron inertial effects. It is shown that shear wave energy is most rapidly and efficiently converted to plasma kinetic energy when the collisionless skin depth exceeds the resistive scale length. The conversion of incompressible MHD modes to compressible modes at X-points provides a possible mechanism for solar coronal heating, and mode conversion processes of this type are also likely to occur in tokamak plasmas with X-points.
机译:对于在纵向方向上存在变化且忽略了等离子压力效应的情况下,研究了弱的纵向引导场B-zo的情况,研究了在磁性X点附近的剪切和快速Alfven波的耦合。结果表明,在理想磁流体动力学(MHD)和B-zo = 0的极限范围内,对于剪切波的解析解表现出相混合,磁场和动能的平衡,且其速率随初始扰动的空间范围而增加。推导并描述了在有限B-z0存在下用剪切波扰动快速波泵激的方程,并进行了数值求解。考虑到电阻率和电子惯性效应。结果表明,当无碰撞趋肤深度超过电阻刻度长度时,剪切波能量可以最快速,最有效地转换为等离子体动能。不可压缩的MHD模式在X点转换为可压缩模式提供了太阳日冕加热的可能机制,并且这种类型的模式转换过程也很可能在具有X点的托卡马克等离子体中发生。

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