论文标题

在混合碰撞碰撞状态下浆液为主导的磁重新连接的实验室观察

Laboratory observation of plasmoid-dominated magnetic reconnection in hybrid collisional-collisionless regime

论文作者

Zhao, Z. H., An, H. H., Xie, Y., Lei, Z., Yao, W. P., Yuan, W. Q., Xiong, J., Wang, C., Ye, J. J., Xie, Z. Y., Fang, Z. H., Lei, A. L., Pei, W. B., He, X. T., Zhou, W. M., Wang, W., Zhu, S. P., Qiao, B.

论文摘要

磁场拓扑的磁重新连接,破坏和重组是将磁能快速释放到血浆颗粒中的基本过程,在整个宇宙中普遍发生。在大多数自然情况下,重新连接层两侧的等离子体特性是不对称的,尤其是与密度和温度组合相关的碰撞速率,并严格确定重新连接机制。迄今为止,所有有关磁重复接触的实验室实验都仅限于纯粹的碰撞或无碰撞状态。在这里,我们报告了针对新型混合碰撞碰撞碰撞状态中不对称磁重连接的精心设计的实验研究,这是通过激光燃烧的Cu和CH等离子体之间的相互作用。我们表明,在这种杂种状态下,撕裂不稳定的增长率仍然很大,导致多种浆液的迅速形成,低于纯粹无碰撞状态的浆液,但比碰撞案例高得多。此外,我们首次通过使用高分辨率的质子射线照相直接观察了浆液为主的磁重复连接的整个过程的拓扑演变。

Magnetic reconnection, breaking and reorganization of magnetic field topology, is a fundamental process for rapid release of magnetic energy into plasma particles that occurs pervasively throughout the universe. In most natural circumstances, the plasma properties on either side of the reconnection layer are asymmetric, in particular for the collision rates that are associated with a combination of density and temperature and critically determine the reconnection mechanism. To date, all laboratory experiments on magnetic reconnections have been limited to purely collisional or collisionless regimes. Here, we report a well-designed experimental investigation on asymmetric magnetic reconnections in a novel hybrid collisional-collisionless regime by interactions between laser-ablated Cu and CH plasmas. We show that the growth rate of the tearing instability in such a hybrid regime is still extremely large, resulting in rapid formation of multiple plasmoids, lower than that in the purely collisionless regime but much higher than the collisional case. In addition, we, for the first time, directly observe the topology evolutions of the whole process of plasmoid-dominated magnetic reconnections by using highly-resolved proton radiography.

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