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地基观测的夜侧极光对行星际激波的响应
引用本文:刘建军,胡红桥,韩德胜,邢赞扬,胡泽骏,黄德宏,杨惠根.地基观测的夜侧极光对行星际激波的响应[J].地球物理学报,2013,56(6):1785-1796.
作者姓名:刘建军  胡红桥  韩德胜  邢赞扬  胡泽骏  黄德宏  杨惠根
作者单位:1. 武汉大学电子信息学院, 武汉 430079; 2. 国家海洋局极地科学重点实验室, 中国极地研究中心, 上海 200136; 3. 西安电子科技大学理学院, 西安 710071
基金项目:国家自然科学基金(40974083,41031064,40904041,41274149);海洋公益项目(201005017);国家重点基础研究发展计划"973计划"(2010CB950503-06);南北极环境综合与评估专项(CHINARE2012-02-03);中国极地对外合作项目(IC201303)资助.
摘    要:行星际激波与地球磁层相互作用通常会导致日侧极光活动增强,随后沿着极光卵的晨昏两侧向夜侧扩展的激波极光.行星际激波也可能直接导致夜侧扇区极光活动增强,甚至沉降粒子能通量的数量级可以与典型亚暴相比拟.本文首次利用我国南极中山站和北极黄河站连续多年积累的极光观测数据,对行星际激波与地球磁层相互作用期间地面台站在夜侧扇区(18—06MLT)观测的极光响应进行了分析.对18个极光观测事件的分析结果表明:行星际激波与磁层相互作用可以在夜侧触发极光爆发和极光微弱增强或静态无变化事件;太阳风-磁层能量耦合的效率以及磁层空间的稳定性决定着行星际激波能否触发极光爆发.

关 键 词:极光  行星际激波  极光爆发  南极中山站  北极黄河站  
收稿时间:2013-02-28

Response of nightside aurora to interplanetary shock from ground optical observation
LIU Jian-Jun,HU Hong-Qiao,HAN De-Sheng,XING Zan-Yang,HU Ze-Jun,HUANG De-Hong,YANG Hui-Gen.Response of nightside aurora to interplanetary shock from ground optical observation[J].Chinese Journal of Geophysics,2013,56(6):1785-1796.
Authors:LIU Jian-Jun  HU Hong-Qiao  HAN De-Sheng  XING Zan-Yang  HU Ze-Jun  HUANG De-Hong  YANG Hui-Gen
Institution:1. School of Electronic Information, Wuhan University, Wuhan 430079, China; 2. SOA Key Laboratory for Polar Science, Polar Research Institute of China, Shanghai 200136, China; 3. School of Science, Xidian University, Xi'an 710071, China
Abstract:Interaction between interplanetary shock and magnetosphere frequently induces dayside enhancements of auroral activity, and subsequent enhancement of auroral precipitation referred as shock aurora propagating dawnward and duskward from noon to the night sector. In some cases, these interplanetary shocks also induce enhanced activity during which the power precipitated into the night sector may reach values as high as observed during typical magnetospheric substorms. Present study analyze the nightside auroral responses to the interplanetary shock sudden compression based-on the ground optical auroral observations from Chinese Antarctic Zhongshan and Arctic Yellow River stations for the first time. Of 18 shock associated aurora cases indicated that nightside auroral responses can be classified into auroral breakup and weak intensification or null events. Epoch time analysis showed that both the solar wind-magnetosphere coupling efficiency and electro-magnetic environment inside magnetosphere determine the nightside auroral responses.
Keywords:Aurora  Interplanetary shock  Auroral breakup  Zhongshan station  Yellow River station
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