论文标题
通过磁铁的电子加速射流弓波
Electron acceleration by magnetosheath jet-driven bow waves
论文作者
论文摘要
Magnetosheath喷气机是具有增强动态压力的局部快速流动。当他们超级磁体在压缩环境磁石等离子体上时,弓形波或冲击可能在其前面形成。最近观察到这种弓波加速了离子和可能的电子。先前已经分析了离子加速过程,但是电子加速过程仍然在很大程度上没有探索。在这里,我们在三个事件的实量期间使用事件和宏观的时间历史来使用多点的观察,以确定磁石是否以及如何加速电子。我们表明,当环境磁盘中的超颗粒对弓波对流时,有些电子被冲击加速并反射到环境磁铁上,而另一些则继续向下移动弓波的下游,从而导致双向运动。我们的研究表明,磁石喷射驱动的弓波可以导致磁盘上的外电子额外的能量。这意味着Magnetosheath喷气机可以提高行星弓冲击或其他类似天体物理环境下电子加速度的效率。
Magnetosheath jets are localized fast flows with enhanced dynamic pressure. When they supermagnetosonically compress the ambient magnetosheath plasma, a bow wave or shock can form ahead of them. Such a bow wave was recently observed to accelerate ions and possibly electrons. The ion acceleration process was previously analyzed, but the electron acceleration process remains largely unexplored. Here we use multi-point observations by Time History of Events and Macroscale during Substorms from three events to determine whether and how magnetosheath jet-driven bow waves can accelerate electrons. We show that when suprathermal electrons in the ambient magnetosheath convect towards a bow wave, some electrons are shock-drift accelerated and reflected towards the ambient magnetosheath and others continue moving downstream of the bow wave resulting in bi-directional motion. Our study indicates that magnetosheath jet-driven bow waves can result in additional energization of suprathermal electrons in the magnetosheath. It implies that magnetosheath jets can increase the efficiency of electron acceleration at planetary bow shocks or other similar astrophysical environments.