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Characteristic magnetic field and speed properties of interplanetary coronal mass ejections and their sheath regions

机译:行星际日冕物质抛射及其鞘区的特征磁场和速度特性

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摘要

Prediction of the solar wind conditions in near-Earth space, arising from both quasi-steady and transient structures, is essential for space weather forecasting. To achieve forecast lead times of a day or more, such predictions must be made on the basis of remote solar observations. A number of empirical prediction schemes have been proposed to forecast the transit time and speed of coronal mass ejections (CMEs) at 1 AU. However, the current lack of magnetic field measurements in the corona severely limits our ability to forecast the 1 AU magnetic field strengths resulting from interplanetary CMEs (ICMEs). In this study we investigate the relation between the characteristic magnetic field strengths and speeds of both magnetic cloud and noncloud ICMEs at 1 AU. Correlation between field and speed is found to be significant only in the sheath region ahead of magnetic clouds, not within the clouds themselves. The lack of such a relation in the sheaths ahead of noncloud ICMEs is consistent with such ICMEs being skimming encounters of magnetic clouds, though other explanations are also put forward. Linear fits to the radial speed profiles of ejecta reveal that faster-traveling ICMEs are also expanding more at 1 AU. We combine these empirical relations to form a prediction scheme for the magnetic field strength in the sheaths ahead of magnetic clouds and also suggest a method for predicting the radial speed profile through an ICME on the basis of upstream measurements.
机译:准稳定结构和瞬态结构对近地空间太阳风状况的预测对于空间天气预报至关重要。为了获得一天或一天​​以上的预测交货时间,必须基于远程太阳观测来进行此类预测。已经提出了许多经验预测方案来预测1 AU时冠状物质抛射(CME)的通过时间和速度。但是,目前电晕中缺乏磁场测量,严重限制了我们预测由行星际CME(ICME)产生的1 AU磁场强度的能力。在这项研究中,我们研究了1 AU时磁云和非云ICME的特征磁场强度与速度之间的关系。发现场和速度之间的相关性仅在磁云之前的鞘区域中才有意义,而在云本身内部则不重要。在非云ICME之前的鞘层中缺乏这种关系,这与此类ICME正在掠过磁云相一致,尽管也提出了其他解释。与射弹径向速度曲线的线性拟合表明,行进速度更快的ICME在1 AU时也会扩展更多。我们结合这些经验关系,形成对电磁云之前的鞘层中磁场强度的预测方案,并且还提出了一种基于上游测量结果通过ICME预测径向速度分布的方法。

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