论文标题
磁重新连接开始之前的磁尾电流板的配置
Configuration of magnetotail current sheet prior to magnetic reconnection onset
论文作者
论文摘要
磁尾电流板配置确定了控制质量发作的磁重新连接性能,这是地球磁层中最有能力的现象之一。安静的时间电流板通常被近似为二维(2D)磁场构型由各向同性等离子体压力梯度平衡。但是,重新连接的开始之前是当前纸变薄,并形成了将近一维(1D)磁场配置。在这项研究中,使用粒子中的模拟,我们研究了这种薄电流板的力平衡,当时它们是由等离子体流入驱动的。我们证明,由于等离子体压力不良的形成,磁场构型从2D到1D的跃迁并揭示了其在离子分布的nongyrotropic项中的起源。我们表明,这种nongyrotropic电流板的不稳定性和动力学可以控制实体的发作,其特性与最常见的2D各向同性构型的属性大不相同。
The magnetotail current sheet configuration determines magnetic reconnection properties that control the substorm onset, one of the most energetic phenomena in the Earth's magnetosphere. The quiet-time current sheet is often approximated as a two-dimensional (2D) magnetic field configuration balanced by isotropic plasma pressure gradients. However, reconnection onset is preceded by the current sheet thinning and the formation of a nearly one-dimensional (1D) magnetic field configuration. In this study, using particle-in-cell simulations, we investigate the force balance of such thin current sheets when they are driven by plasma inflow. We demonstrate that the magnetic field configuration transitions from 2D to 1D thanks to the formation of plasma pressure nongyrotropy and reveal its origin in the nongyrotropic terms of the ion distributions. We show that substorm onset may be controlled by the instability and dynamics of such nongyrotropic current sheets, having properties much different from the most commonly investigated 2D isotropic configuration.