论文标题
连续的互动冠状质量弹出:如何创造完美的风暴?
Successive interacting coronal mass ejections: How to create a perfect storm?
论文作者
论文摘要
冠状质量弹出(CME)是太阳上最大的爆发,也是地球严重太空天气的主要驱动力。在这项研究中,我们在3-D磁水动力学模拟中实施了无力的Spheromak CME描述,以参数评估代表性的Heliosphere内的连续相互作用CME。我们探索了CME-CME相互作用,以进行一系列方向,启动时间变化和CME交手,并通过主要的太阳风变量以及干扰风暴时间指数和下验证磁置僵局的经验度量来量化其地理效应。我们展示了太阳和地球之间两个中等CME的相互作用如何转化为地球的极端条件以及CME-CME在不同径向距离下的相互作用如何最大程度地提高不同的太阳风变量,从而诱导不同的地球物理影响。特别是,我们证明了给定CME的方向和交接性如何对磁通量的保护和损失产生重大影响,因此,由于与行星际磁场的磁重新连接,磁通量以及b $ _z $。因此,这项研究暗示了对太阳能电晕中CME手性的鉴定是预测涉及多个CME的地磁风暴的早期诊断。
Coronal mass ejections (CMEs) are the largest type of eruptions on the Sun and the main driver of severe space weather at the Earth. In this study, we implement a force-free spheromak CME description within 3-D magnetohydrodynamic simulations to parametrically evaluate successive interacting CMEs within a representative heliosphere. We explore CME-CME interactions for a range of orientations, launch time variations and CME handedness and quantify their geo-effectiveness via the primary solar wind variables and empirical measures of the disturbance storm time index and subsolar magnetopause standoff distance. We show how the interaction of two moderate CMEs between the Sun and the Earth can translate into extreme conditions at the Earth and how CME-CME interactions at different radial distances can maximise different solar wind variables that induce different geophysical impacts. In particular, we demonstrate how the orientation and handedness of a given CME can have a significant impact on the conservation and loss of magnetic flux, and consequently B$_z$, due to magnetic reconnection with the interplanetary magnetic field. This study thus implicates identification of CME chirality in the solar corona as an early diagnostic for forecasting geomagnetic storms involving multiple CMEs.