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MHD modeling of the double-gradient (kink) magnetic instability

机译:磁流体动力建模的double-gradient(结)磁不稳定性

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The paper presents the detailed numerical investigation of the "double-gradient mode," which is believed to be responsible for the magnetotail flapping oscillations - the fast vertical (normal to the layer) oscillations of the Earth's magnetotail plasma sheet with a quasiperiod ~100-200 s. The instability is studied using the magnetotail near-equilibrium configuration. For the first time, linear three-dimensional numerical analysis is complemented with full 3-D MHD simulations. It is known that the "double-gradient mode" has unstable solutions in the region of the tailward growth of the magnetic field component, normal to the current sheet. The unstable kink branch of the mode is the focus of our study. Linear MHD code results agree with the theory, and the growth rate is found to be close to the peak value, provided by the analytical estimates. Full 3-D simulations are initialized with the numerically relaxed magnetotail equilibrium, similar to the linear code initial condition. The calculations show that current layer with tailward gradient of the normal component of the magnetic field is unstable to wavelengths longer than the curvature radius of the field line. The segment of the current sheet with the earthward gradient of the normal component makes some stabilizing effect (the same effect is registered in the linearized MHD simulations) due to the minimum of the total pressure localized in the center of the sheet. The overall growth rate is close to the theoretical double-gradient estimate averaged over the computational domain. Key Points Analytical model of double-gradient instability fits the numerical simulations Earthward gradient of the normal magnetic component reduces growth rate globally Large curvature radii of the magnetic field lines stabilize instability
机译:介绍了详细的数值调查的“double-gradient模式”,这被认为是负责磁尾扑振荡-快垂直振荡(正常层)地球的磁尾等离子体片quasiperiod ~ 100 - 200年代。研究了磁尾使用这个配置。三维数值分析补充与全三维磁流体动力模拟。知道“double-gradient模式”tailward在该地区不稳定的解决方案增长的磁场分量,正常当前表。模式是我们研究的重点。代码的结果同意这个理论,增长率接近峰值所提供的价值,分析估计。三维模拟初始化数字磁尾平衡,放松类似于线性代码初始条件。计算表明,当前层tailward梯度的正常组成部分磁场不稳定的波长更长比场线的曲率半径。当前表的段向地面梯度使一些正常的组件稳定作用(注册相同的效果由于在线性磁流体动力模拟)最低的总压强本地化表的中心。接近理论double-gradient估计在计算域平均。点double-gradient的分析模型不稳定性的数值模拟向地面正常磁场的梯度组件降低了全球增长速度大磁场线的曲率半径稳定不稳定

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