首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Type II solar radio bursts predicted by 3-D MHD CME and kinetic radio emission simulations
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Type II solar radio bursts predicted by 3-D MHD CME and kinetic radio emission simulations

机译:通过3-D MHD CME和动态无线电发射模拟预测的II型太阳无线电脉冲

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摘要

Impending space weather events at Earth are often signaled by type II solar radio bursts. These bursts are generated upstream of shock waves driven by coronal mass ejections (CMEs) that move away from the Sun. We combine elaborate three-dimensional (3-D) magnetohydrodynamic predictions of realistic CMEs near the Sun with a recent analytic kinetic radiation theory in order to simulate two type II bursts. Magnetograms of the Sun are used to reconstruct initial solar magnetic and active region fields for the modeling. STEREO spacecraft data are used to dimension the flux rope of the initial CME, launched into an empirical data-driven corona and solar wind. We demonstrate impressive accuracy in time, frequency, and intensity for the two type II bursts observed by the Wind spacecraft on 15 February 2011 and 7 March 2012. Propagation of the simulated CME-driven shocks through coronal plasmas containing preexisting density and magnetic field structures that stem from the coronal setup and CME initiation closely reproduce the isolated islands of type II emission observed. These islands form because of a competition between the growth of the radio source due to spherical expansion and a fragmentation of the radio source due to increasingly radial fields in the nose region of the shock and interactions with streamers in the flank regions of the shock. Our study provides strong support for this theory for type II bursts and implies that the physical processes involved are understood. It also supports a near-term capability to predict and track these events for space weather predictions.
机译:即将发生的地球空间天气事件通常是通过II型太阳无线电爆发发出的。这些爆发是在由日冕物质抛射(CME)驱动的冲击波上游产生的,这些抛射物远离太阳移动。我们将精细的三维(3-D)磁流体动力学预测对现实的CMEs靠近太阳与最近的解析动力学辐射理论,以模拟两个II型爆发。太阳的磁图用于重建初始太阳磁场和活动区域场以进行建模。 STEREO航天器数据用于确定初始CME的通量绳的尺寸,并以经验数据驱动的电晕和太阳风发射。我们展示了风飞船在2011年2月15日和2012年3月7日观测到的两个两个II型爆发的时间,频率和强度的惊人准确性。模拟的CME驱动的激波通过含有预先存在的密度和磁场结构的冠状等离子体的传播源于日冕设置,CME的引发紧密地再现了观察到的孤立的II型发射岛。这些岛的形成是由于球形扩张引起的无线电源的增长与激波的鼻子区域中径向场的增加以及激波的侧面区域中的拖缆之间的相互作用导致的无线电源的碎片化之间的竞争所致。我们的研究为II型爆发提供了强有力的支持,并暗示所涉及的物理过程是可以理解的。它还支持短期功能,可以预测和跟踪这些事件以进行空间天气预测。

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