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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Decay of interplanetary coronal mass ejections and Forbush decrease recovery times
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Decay of interplanetary coronal mass ejections and Forbush decrease recovery times

机译:衰变的星际日冕物质抛射福布希下降恢复时间

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We investigate the relation between Forbush cosmic ray decrease recovery time and coronal mass ejection transit time between the Sun and Earth. We identify 17 Forbush decreases from ground-based neutron count rates between 1978 and 2003 that occur during the same phase in the solar cycle and can be associated with single coronal mass ejections (CMEs) in the SOHO LASCO CME Catalog or previously published reports and with specific interplanetary coronal mass ejections (ICMEs) crossing the vicinity of Earth. We find an anticorrelation between Forbush recovery times and CME transit time that contradicts the predictions of simple cosmic ray diffusive barrier models. The anticorrelation suggests that the decay rate of ICMEs is anticorrelated with their travel speed. Forbush recovery times range from seven times the transit time for the fastest disturbance to a fifth the Sun-Earth transit time for the slowest. To account for the large range of measured recovery times, we infer that the slowest disturbances must decay rapidly with radius, whereas the fastest ones must remain strong. The longest recovery times suggest that the fastest disturbances in our sample decayed less rapidly with radius than the ambient solar wind magnetic field strength.
机译:我们调查福布希宇宙之间的关系雷减少恢复时间和日冕物质太阳和地球之间弹射渡越时间。我们确定了17个福布希减少地面中子计数率和1978之间2003年,发生在相同的阶段太阳活动周期,可以与单一有关SOHO LASCO日冕物质抛射(cme)CME目录或以前报告和发表与特定的星际日冕物质抛射(icm)穿越地球的附近。我们找到一个anticorrelation福布希之间恢复时间,CME渡越时间与简单的宇宙射线的预测扩散势垒模型。表明icm的衰变率anticorrelated旅行速度。恢复时间从七次过境时间最快五分之一的干扰Sun-Earth过境时间最慢。占的大范围测量复苏时候,我们推断最慢的干扰必须迅速衰减半径,而最快的必须保持强劲。恢复时间建议最快的干扰在我们的样例衰变迅速减少太阳风与半径比周围的磁场磁场强度。

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