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首页> 外文期刊>Space Science Reviews >Magnetic Flux Emergence, Activity, Eruptions and Magnetic Clouds: Following Magnetic Field from the Sun to the Heliosphere
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Magnetic Flux Emergence, Activity, Eruptions and Magnetic Clouds: Following Magnetic Field from the Sun to the Heliosphere

机译:磁通量的出现,活动,爆发和磁云:从太阳到日光层的磁场

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摘要

We present an overview of how the principal physical properties of magnetic flux which emerges from the toroidal fields in the tachocline through the turbulent convection zone to the solar surface are linked to solar activity events, emphasizing the effects of magnetic field evolution and interaction with other magnetic structures on the latter. We compare the results of different approaches using various magnetic observables to evaluate the probability of flare and coronal mass ejection (CME) activity and forecast eruptive activity on the short term (i.e. days). Then, after a brief overview of the observed properties of CMEs and their theoretical models, we discuss the ejecta properties and describe some typical magnetic and composition characteristics of magnetic clouds (MCs) and interplanetary CMEs (ICMEs). We review some individual examples to clarify the link between eruptions from the Sun and the properties of the resulting ejecta. The importance of a synthetic approach to solar and interplanetary magnetic fields and activity is emphasized. Keywords Magnetic flux emergence - Magnetic observables - Flare - Coronal mass ejection - Magnetic cloud - ICME
机译:我们概述了从旋流线的环形场通过湍流对流区到达太阳表面的磁通量的主要物理性质如何与太阳活动事件相关联,着重强调了磁场演化以及与其他磁场相互作用的影响后者的结构。我们比较了使用各种磁性观测物的不同方法的结果,以评估耀斑和日冕物质抛射(CME)活动的可能性,并预测短期(即几天)的爆发活动。然后,在简要概述了CME的观测特性及其理论模型之后,我们讨论了喷射特性,并描述了磁云(MC)和行星际CME(ICME)的一些典型的磁和组成特征。我们回顾一些单独的例子,以弄清太阳喷发与最终喷出物特性之间的联系。强调了合成方法对太阳和行星际磁场及活动的重要性。关键词磁通量出现-电磁观测值-耀斑-日冕物质抛射-磁云-ICME

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