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首页> 外文期刊>Nature Communications >Direct evidence of secondary reconnection inside filamentary currents of magnetic flux ropes during magnetic reconnection
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Direct evidence of secondary reconnection inside filamentary currents of magnetic flux ropes during magnetic reconnection

机译:磁力重新连接期间磁通量绳索丝状电流中的二次重新连接的直接证据

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摘要

Magnetic reconnection is a fundamental plasma process, by which magnetic energy is explosively released in the current sheet to energize charged particles and to create bi-directional Alfvénic plasma jets. Numerical simulations predicted that evolution of the reconnecting current sheet is dominated by formation and interaction of magnetic flux ropes, which finally leads to turbulence. Accordingly, most volume of the reconnecting current sheet is occupied by the ropes, and energy dissipation occurs via multiple relevant mechanisms, e.g., the parallel electric field, the rope coalescence and the rope contraction. As an essential element of the reconnecting current sheet, however, how these ropes evolve has been elusive. Here, we present direct evidence of secondary reconnection in the filamentary currents within the ropes. The observations indicate that secondary reconnection can make a significant contribution to energy conversion in the kinetic scale during turbulent reconnection.
机译:磁性重新连接是一种基本的等离子体工艺,通过该过程,在当前片材中爆炸释放磁能以激励带电粒子并产生双向Alfvénic等离子体喷射器。数值模拟预测,重新连接的当前纸张的进化通过磁通绳的形成和相互作用,最终导致湍流。因此,大多数重新连接电流纸张被绳索占据,并且通过多个相关机制,例如并联电场,绳索聚结和绳索收缩发生能量耗散。然而,作为重新连接当前表的基本要素,这些绳索如何发展是难以捉摸的。在这里,我们展示了绳索内丝状电流中的二次重新连接的直接证据。观察结果表明,次级重新连接可以在湍流重新连接期间对动力学中的能量转换作出显着贡献。

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