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Correlation Analyses Between the Characteristic Times of Gradual Solar Energetic Particle Events and the Properties of Associated Coronal Mass Ejections

机译:渐进的太阳高能粒子事件的特征时间与伴生冠状物质抛射性质之间的相关性分析

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摘要

It is generally believed that gradual solar energetic particles (SEPs) are accelerated by shocks associated with coronal mass ejections (CMEs). Using an ice-cream cone model, the radial speed and angular width of 95 CMEs associated with SEP events during 1998 – 2002 are calculated from SOHO/LASCO observations. Then, we investigate the relationships between the kinematic properties of these CMEs and the characteristic times of the intensity-time profile of their accompanied SEP events observed at 1 AU. These characteristic times of SEP are i) the onset time from the accompanying CME eruption at the Sun to the SEP arrival at 1 AU, ii) the rise time from the SEP onset to the time when the SEP intensity is one-half of peak intensity, and iii) the duration over which the SEP intensity is within a factor of two of the peak intensity. It is found that the onset time has neither significant correlation with the radial speed nor with the angular width of the accompanying CME. For events that are poorly connected to the Earth, the SEP rise time and duration have no significant correlation with the radial speed and angular width of the associated CMEs. However, for events that are magnetically well connected to the Earth, the SEP rise time and duration have significantly positive correlations with the radial speed and angular width of the associated CMEs. This indicates that a CME event with wider angular width and higher speed may more easily drive a strong and wide shock near to the Earth-connected interplanetary magnetic field lines, may trap and accelerate particles for a longer time, and may lead to longer rise time and duration of the ensuing SEP event.
机译:一般认为,日冕高能粒子(SEPs)通过与日冕物质抛射(CMEs)相关的冲击而加速。使用冰淇淋蛋筒模型,根据SOHO / LASCO观测值,计算了1998年至2002年与SEP事件相关的95个CME的径向速度和角宽。然后,我们调查了这些CME的运动特性与其在1 AU观察到的伴随SEP事件的强度-时间曲线的特征时间之间的关系。 SEP的这些特征时间是:i)从伴随的CME喷发到SEP到达1 AU的起始时间,ii)从SEP起始到SEP强度为峰值强度的一半的时间。 iii)SEP强度在峰值强度的两倍之内的持续时间。发现开始时间与径向速度或伴随的CME的角宽度均不具有显着相关性。对于与地球连接不良的事件,SEP上升时间和持续时间与相关CME的径向速度和角宽度没有显着相关性。但是,对于与地球磁性连接良好的事件,SEP上升时间和持续时间与相关CME的径向速度和角宽度具有显着正相关。这表明,CME事件具有更宽的角宽度和更高的速度,可能更容易在与地球连接的行星际磁场线附近产生强烈而广泛的冲击,可能会更长时间地捕获和加速粒子,并可能导致更长的上升时间随后发生的SEP事件的持续时间。

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  • 来源
    《Solar Physics》 |2011年第2期|p.593-607|共15页
  • 作者单位

    CAS Key Laboratory of Basic Plasma Physics, School of Earth and Space Sciences, University of Science and Technology of China, Anhui, 230026, China;

    CAS Key Laboratory of Basic Plasma Physics, School of Earth and Space Sciences, University of Science and Technology of China, Anhui, 230026, China;

    CAS Key Laboratory of Basic Plasma Physics, School of Earth and Space Sciences, University of Science and Technology of China, Anhui, 230026, China;

    CAS Key Laboratory of Basic Plasma Physics, School of Earth and Space Sciences, University of Science and Technology of China, Anhui, 230026, China;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Characteristic times; CME; Ice-cream cone model; SEP events;

    机译:特征时间;CME;冰激凌模型;SEP事件;

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