论文标题
在太阳周期的上升阶段24
Analysis of large deflections of prominence-CME events during the rising phase of solar cycle 24
论文作者
论文摘要
由于需要提高预测能力的动机,无论是否某种冠状动脉质量弹出(CME)是要影响地球,以及通过统计研究的不足来分析整个爆发系统,重点是在CME偏转下进行管理条件,我们在一年的时间间隔中对13个事件进行了仔细的分析,显示了一年的时间间隔。我们使用了望远镜的望远镜成像,以不同的高度和波长在项目上的船上自治2(Proba2),太阳能动力学观察站(SDO),太阳陆地关系天文台(立体声),太阳能和地球赛(SOHO)SPACECRAFTOTOR(SOHO)SPACECRAFTOTOR(SOHO)和来自National Solar of National Solar of National Solar obervorator(NSO)(NSO)。从2010年10月到2011年9月,我们利用这些航天器的正交位置,我们通过扎点工具和远期模型来检查了CMES的3D轨迹及其相关的太阳源相关的突出。考虑到从潜在的场源表面模型中计算出的冠状磁场,我们研究了磁能分布和运动学特征在这两种结构的非主导传播中的作用。发现在喷发过程中存在的磁环境对于确定CME的轨迹至关重要,这与先前的报告一致。
Motivated by the need to improve the ability to forecast whether a certain coronal mass ejection (CME) is to impact Earth, and by the insufficiency of statistical studies that analyze the whole erupting system with the focus on the governing conditions under CME deflections, we performed a careful analysis of 13 events along a one-year time interval showing large deflections from their source region. We used telescopes imaging the solar corona at different heights and wavelengths on board the Project for Onboard Autonomy 2 (PROBA2), Solar Dynamics Observatory (SDO), Solar TErrestrial RElations Observatory (STEREO), Solar and Heliospheric Observatory (SOHO) spacecraft and from National Solar Observatory (NSO). By taking advantage of the quadrature position of these spacecraft from October 2010 until September 2011, we inspected the 3D trajectory of CMEs and their associated prominences with respect to their solar sources by means of a tie-pointing tool and a forward model. Considering the coronal magnetic fields as computed from a potential field source surface model, we investigate the roles of magnetic energy distribution and kinematic features in the non-radial propagation of both structures. The magnetic environment present during the eruption is found to be crucial in determining the trajectory of CMEs, in agreement with previous reports.