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国家自然科学基金(40825014)

作品数:4 被引量:9H指数:2
相关作者:冯士伟孔祥良李刚宋红强夏利东更多>>
相关机构:山东大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划山东省自然科学基金更多>>
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The kinematics of an untwisting solar jet in a polar coronal hole observed by SDO/AIA被引量:2
2012年
Using the multi-wavelength data from the Atmospheric Imaging Assembly (AIA) onboard the Solar Dynamics Observatory (SDO) spacecraft, we study a jet occurring in a coronal hole near the northern pole of the Sun. The jet presented distinct upward helical motion during ejection. By tracking six identified moving features (MFs) in the jet, we found that the plasma moved at an approximately constant speed along the jet's axis. Meanwhile, the MFs made a circular motion in the plane transverse to the axis. Inferred from linear and trigonometric fittings to the axial and transverse heights of the six tracks, the mean values of the axial velocities, transverse velocities, angular speeds, rotation periods, and rotation radii of the jet are 114 km s-1, 136 km s-1, 0.81° s-1, 452 s and 9.8 × 10^3 km respectively. As the MFs rose, the jet width at the corresponding height increased. For the first time, we derived the height variation of the longitudinal magnetic field strength in the jet from the assumption of magnetic flux conservation. Our results indicate that at heights of 1 × 10^4 -7 × 10^4 km from the base of the jet, the flux density in the jet decreases from about 15 to 3 G as a function of B = 0.5(R/R) - 1)-0.84 (G). A comparison was made with other results in previous studies.
Hua-Dong ChenJun ZhangSu-Li Ma
What geometrical factors determine the in situ solar wind speed?被引量:4
2012年
At present it remains to address why the fast solar wind is fast and the slow wind is slow.Recently we have shown that the field line curvature may substantially influence the wind speed v,thereby offering an explanation for the Arge et al.finding that v depends on more than just the flow tube expansion factor.Here we show by extensive numerical examples that the correlation between v and field line curvature is valid for rather general base boundary conditions and for rather general heating functions.Furthermore,the effect of field line curvature is even more pronounced when the proton-alpha particle speed difference is examined.We suggest that any solar wind model has to take into account the field line shape for any quantitative analysis to be made.
LI BoCHEN YaoXIA LiDong
关键词:太阳风速度原位磁力线
冕流波及其冕震学应用研究综述
2011年
综述了我们近两年来在冕流波(Streamer Waves)现象研究方面的进展。冕流波是由日冕物质抛射(CME)和冕流结构相互作用所激发的、沿等离子体片向外传播的波动过程,是迄今发现的最大尺度的日冕波动现象。冕流波被解释为由冕流等离子体片片状结构所支持的快体积扭曲模式。基于这一理解,我们结合有关的太阳风速度和数密度方面的观测限制,发展了一种新的冕震学方法,可利用波动参数的观测结果推断冕流等离子体片区域在3-10太阳半径范围的阿尔芬速度和磁场强度的径向剖面。我们还在第23太阳活动周内找到了8例较好的CME-冕流摆动事件,其中5例被认定为冕流波事件。比较这些事件发现,导致冕流波激发的CME都具有很高的喷发速度和角宽度,CME与冕流大都从侧面发生相互作用,且作用的最初位置大都位于C2视场的底部或下方,所有正面CME均伴有耀斑现象。这些共同观测特征为我们理解冕流波的激发条件提供了线索。
陈耀冯士伟宋红强李波孔祥良夏利东李醒李刚
关键词:日冕日冕物质抛射
A review of recent studies on coronal dynamics: Streamers, coronal mass ejections, and their interactions被引量:4
2013年
In this article I present a review of recent studies on coronal dynamics, including research progresses on the physics of coronal streamers that are the largest structure in the corona, physics of coronal mass ejections (CMEs) that may cause a global disturbance to the corona, as well as physics of CME-streamer interactions. The following topics will be discussed in depth: (1) acceleration of the slow wind flowing around the streamer considering the effect of magnetic flux tube curvature; (2) physical mechanism accounting for persistent releases of streamer blobs and diagnostic results on the temporal variability of the slow wind speed with such events; (3) force balance analysis and energy release mechanism of CMEs with a flux rope magnetohydrodynamic model; (4) statistical studies on magnetic islands along the coronal-ray structure behind a CME and the first observation of magnetic island coalescence with associated electron acceleration; and (5) white light and radio manifestations of CME-streamer interactions. These studies shed new light on the physics of coronal streamers, the acceleration of the slow wind, the physics of solar eruptions, the physics of magnetic reconnection and associated electron acceleration, the large-scale coronal wave phenomenon, as well as the physics accounting for CME shock-induced type II radio bursts.
CHEN Yao
关键词:日冕物质抛射电子加速CMEBLOB
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