首页 | 本学科首页   官方微博 | 高级检索  
     检索      


A study on radio-loud interacting/non-interacting CMEs-associated SEPs and solar flares
Authors:P Pappa Kalaivani  O Prakash  Li Feng  A Shanmugaraju  Liu-Guan Ding  Lei Lu  Weiqun Gan
Institution:1. Department of Physics, Ultra College of Engineering & Technology for Women, Ultra Nagar, Madurai 625 104, India;2. Department of Physics, Central University of Tamilnadu, Thiruvarur 610 005, Tamil Nadu, India;3. Key Laboratory of Dark Matter and Space Astronomy, Purple Mountain Observatory, Chinese Academy of Sciences, Nanjing 210008, Jiangsu, China;4. Department of Physics, Arul Anandar College, Karumathur, Madurai 625514, Tamil Nadu, India;5. Binjiang College, Nanjing University of Information Science and Technology, Nanjing 210044, Jiangsu, China
Abstract:We have established a data set of 58 major hybrid SEP events associated with meter-to-decahectometer wavelength (m-to-DH) type II bursts, solar flares, and radio-load CMEs during the period of 1997–2014. The main focus of our study is to address the following two questions: Does the interaction of CMEs play a role in the enhancement of SEP intensity? Is there any difference in the seed population, and parent eruptions in the SEP events with and without CME interactions? Hence, the sample of 58 events is classified into two sets: (i) 35 non-interacting-CME-associated SEP events; (ii) 23 interacting-CME-associated SEP events. All the characteristics of SEPs, their associated CMEs/flares and the relationships between them are statistically analyzed and compared. Some of the basic attributes and relative elemental abundances (Fe/O ratios) of the both the sets are also compared. The results indicate that the seed particles in non-interacting-CME-associated SEP events are mostly from solar wind/coronal materials. But in the case of interacting-CME-associated SEP events, it may be associated with both flare material from preceding flares and coronal materials from solar wind/preceding CMEs. The correlation studies reveal that there are clear correlations between logarithmic peak intensity of SEP events and properties of CMEs (space speed: cc?=?0.56) and solar flares (peak intensity: cc?=?0.40; integrated flux: cc?=?0.52) for non-interacting-CME-associated SEP events. But these correlations are absent for the interacting-CME-associated events. In addition, the results suggest that interaction of primary CMEs with their preceding CMEs plays an important role in the enhancement of peak intensity of SEPs at least for a set of m-to-DH type II bursts associated SEP events.
Keywords:Solar energetic particle events (SEPs)  Radio-loud coronal mass ejections  Solar flares  m-to-DH type II radio bursts
本文献已被 ScienceDirect 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号