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Introduction to the physics of solar eruptions and their space weather impact

机译:太阳喷发物理学及其空间天气影响简介

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摘要

The physical processes, which drive powerful solar eruptions, play an important role in our understanding of the Sun–Earth connection. In this Special Issue, we firstly discuss how magnetic fields emerge from the solar interior to the solar surface, to build up active regions, which commonly host large-scale coronal disturbances, such as coronal mass ejections (CMEs). Then, we discuss the physical processes associated with the driving and triggering of these eruptions, the propagation of the large-scale magnetic disturbances through interplanetary space and the interaction of CMEs with Earth's magnetic field. The acceleration mechanisms for the solar energetic particles related to explosive phenomena (e.g. flares and/or CMEs) in the solar corona are also discussed. The main aim of this Issue, therefore, is to encapsulate the present state-of-the-art in research related to the genesis of solar eruptions and their space-weather implications.This article is part of the theme issue ‘Solar eruptions and their space weather impact’.
机译:导致强烈的太阳爆发的物理过程,在我们对太阳与地球之间的联系的理解中起着重要作用。在本期特刊中,我们首先讨论磁场是如何从太阳内部到太阳表面出现的,以建立活动区域,这些活动区域通常会容纳大规模的日冕扰动,例如日冕物质抛射(CME)。然后,我们讨论了与这些爆发的驱动和触发有关的物理过程,通过行星际空间传播的大规模磁干扰以及CME与地球磁场的相互作用。还讨论了与日冕中爆炸现象(例如耀斑和/或CME)有关的太阳高能粒子的加速机制。因此,本期的主要目的是概括与太阳喷发的成因及其对空间天气的影响有关的最新研究。本文是主题“太阳喷发及其成因”的一部分空间天气影响”。

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