关于渐进式和脉冲式日冕物质抛射(CME)的传播

N. Mohamad Ansor, Z. Hamidi, N. Shariff
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摘要

日冕物质抛射(CME)是一种从日冕释放磁场和等离子体的重大太阳活动,被称为空间天气的主要驱动力。一般来说,根据日冕物质抛射的运动特性(包括速度和加速度),可将其分为渐进式和脉冲式两种。本文旨在根据太阳周期 25 的近期事件(日期),分析渐进式和脉冲式 CME 在行为上的差异,并证明不久前已经证明的它们的特征。根据 SOHO LASCO 目录,通过研究每个事件的高度-时间、高度-速度和高度-加速度剖面进行了数据分析。结果表明,脉冲 CME 的速度比渐变 CME 快得多,平均速度分别为每秒 1239 千米和每秒 503.6 千米。据认为,伴随着脉冲 CME 的 M6.7 耀斑是造成高速的主要原因,因为它能够提供更多的热能,并在磁重联过程中加强能量转换。在脉冲 CME 中观察到的减速现象是由于与背景太阳风相互作用而失去动量造成的,而小范围的加速则表现为 CME 在整个传播过程中的逐渐加速。
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On propagation of gradual and impulsive Coronal Mass Ejections (CMEs)
Coronal Mass Ejection (CME) is a significant solar activity that releases magnetic field and plasma out of the corona and they are known as the main driver of space weather. In general, CMEs are characterized as gradual and impulsive based on their kinematic properties that include velocity and acceleration. This paper is aimed to analyze the differences in behaviour of gradual and impulsive CME based on recent events (dates) in solar cycle 25 and to justify their characterizations that have been demonstrated a while ago. Data analysis is conducted by studying the height-time, height-velocity and height-acceleration profiles for each event, based on SOHO LASCO Catalogue. Results show that impulsive CME travels a lot faster than gradual CME, with average velocity of 1239 km/s and 503.6 km/s respectively. It is believed that M6.7 flare accompanying the impulsive CME has been the main reason to high velocity due to its ability to contribute more heat energy and enhances the energy conversion during magnetic reconnection. Deceleration is observed in impulsive CME that is caused by the loss of momentum as interacting with the background solar wind and small-scale acceleration is manifested by gradual CME all through the propagation.
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