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An intuitive two-fluid picture of spontaneous 2D collisionless magnetic reconnection and whistler wave generation

机译:直观的两流体图片自发2D碰撞磁重连接和吹口哨发电

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An intuitive and physical two-fluid picture of spontaneous 2D collisionless magnetic reconnection and whistler wave generation is presented in the framework of 3D electron-magnetohydrodynamics. In this regime, canonical circulation (Q = m(e)del x u + q(e)B) flux tubes can be defined in analogy to magnetic flux tubes in ideal magnetohydrodynamics. Following the 3D behavior of these Q flux tubes provides a new perspective on collisionless reconnection-a perspective that has been hard to perceive via examinations of 2D projections. This shows that even in a 2D geometry with an ignorable coordinate, a 3D examination is essential for a full comprehension of the process. Intuitive answers are given to three main questions in collisionless reconnection: why is reconnection spontaneous, why do particles accelerate extremely fast, and why are whistler waves generated? Possible extensions to other regimes are discussed. Published by AIP Publishing.
机译:3D电子 - 磁流体动力学的框架中提出了自发2D碰撞磁重新连接和吹口波产生的直观和物理的两流体图像。 在该制度中,规范循环(Q = M(e)&x u + q(e)b)通量管可以类似于理想磁流动动力学中的磁通量管。 遵循这些Q的3D行为,提供了一种关于碰撞的重新连接的新视角,这是一种通过2D投影的检查难以察觉的透视图。 这表明即使在具有忽略坐标的2D几何形状中,3D检查对于充分理解该过程至关重要。 直观的答案在碰撞中重新连接到三个主要问题:为什么重新连接自发,为什么粒子会非常快速加速,为什么惠斯勒波产生? 讨论了对其他制度的可能扩展。 通过AIP发布发布。

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