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三维零点位形下喷流的观测研究
其他题名The Observational Study of Jets under 3D Null Point Configuration
李海东
学位类型博士
导师李可军
2018
学位授予单位中国科学院大学
学位授予地点北京
学位专业天体物理
关键词喷流 耀斑 磁场重联 磁场对消
摘要磁重联是太阳大气中一种很普遍的现象。在重联过程中,通过磁拓扑的改变可以将储存在日冕中的磁能释放转化为等离子体的动能、热能以及高能带电粒子的动能。在磁重联的理论研究中,三维重联和二维重联是完全不同的。研究三维重联中的重联行为一直被许多研究者认为是磁重联理论突破的关键。磁零点位形普遍存在于太阳大气中,它常常和太阳的活动爆发息息相关。喷流作为太阳日面一种常见的太阳爆发活动,而且大多数喷流的几何形态以及磁场环境决定了它们的磁场位形与零点重联过程有关,因此它为我们三维磁零点的研究提供了很好的实验环境。在喷流的模拟中,喷流的产生常常与零点磁场位形有关,磁零点及其附近的区域是易于电流片产生的区域,这个区域常发生比较剧烈的重联行为。事实上,关于喷流的很多数值和理论模拟都建立在理想化和简单化的前提下建立的,我们观测到的爆发事件往往是比较复杂的。磁场拓扑决定了各种太阳爆发现象的形态和物理机制。磁拓扑结合观测的研究更有助于改善我们对喷流的驱动机制以及日冕加热机制的理解。在本论文中,借助于SDO、GONG和NVST 优秀的观测资料,并结合矢量场外推, 我们详细地研究了三个喷流事件。主要结果如下:通过分析研究2015年2月3日SDO的观测,我们呈现了在一对磁偶极子浮现期间,一个爆裂喷流的形成,其爆发过程伴随准环形耀斑带的形成。该喷流发生于磁零点位形下,非线性无力场外推展示了喷流爆发前的圆顶形拱的下方是一个扭丝结构,其足部分别扎根于磁偶极子的正负磁极。我们推测扭丝结构的建立与磁偶极子转动有关。而扭丝结构的激活与磁偶极子的正磁元与周围磁场碰撞有关。待激活后,扭丝结构和脊线场在磁零点附近发生了作用形成了爆裂喷流,喷流足部也同时产生了准环形耀斑带。磁偶极子的浮现和转动是耀斑能量积累最重要的因素,而磁极之间的磁重联很可能触发了事件的爆发。通过研究2015年2月6日SDO和GONG的观测,我们展现了扇面-脊位形下爆发的暗条和日冕磁场在磁零点附近发生磁重联,该重联过程直接导致了爆裂喷流的形成。在扇面-脊磁场位形下,一个激活的暗条缓慢上升不断接近脊线场并发生作用。在这个过程中有双向流和撕裂模不稳定性相关的磁岛出现,这些都是磁重联发生的直接证据。结果,暗条包含的物质沿着外脊线场喷出。我们认为爆发的暗条与日冕磁场在磁零点附近的磁重联导致了很强的热压和磁压不平衡,最终有了爆裂喷流的形成。另外,我们通过对2014年3月17日太阳黑子边缘暗条爆发区域进行势场外推,发现该暗条也同样位于一个磁零点位形下。它和上面的两个事件不同的地方是,在暗条爆发前就有环形耀斑带的形成以及暗条的增亮。我们推测零点重联很可能类似四极位形下的“breakout”重联过程,或许能削弱暗条上方的磁力线,这样便有利于暗条的向外扩张和爆发。
其他摘要Magnetic reconnection is a common phenomenon that is ubiquitous in the solar atmosphere. It facilitatesthe release of energy stored in the magnetic field by permitting a change in the magnetic topology in an almost ideal plasma. Reconnection in three dimensions has been shown to be completely different in many fundamental respects from the classically studied process in two dimensions. The main thrust of reconnection theory at present is to understand the different ways in which it may take place in three dimensions. In the sun's atmosphere, coronal null point is common configuration, and it is often associated with the activity of solar. The jets are a common solar phenomena in the solar atmosphere, and their magnetic configuration are determined by the geometry and magnetic field of the jets, which is associated with null point reconnection. This can provide us a good experimental environment for the study of null point reconnection. The common factor in the numerous models that have been explored is the existence of a null point in the coronal magnetic field configuration that gives rise to the jet. Coronal null is a region that is susceptible to the build-up of current sheets where reconnection can occur in an explosive manner. Much of the literature on reconnection focusses on the two-dimensional problem, due to the theoretical and computational simplifications that this allows. However, it is now becoming clear that magnetic fields is rather complicated. Solar phenomena is often affected by magnetic field topology. Combined with the magnetic field topology, we can improve the understanding of the jets driving and heating mechanism. In this thesis, by means of excellent observations from SDO, GONG, and NVST, and NLFFF, three jets, which involve their complete eruption process, are studied in detail. The main results are included as below:By analyzing the excellent observations derived from the SDO on 2015 February 3, we present the detection of a small eruption and the associated quasi-circular ribbon flare during the emergence of a bipole. Under a fan dome, a sigmoid was rooted in a single magnetic bipole, which was encircled by negative polarity. The nonlinear force-free field extrapolation shows the presence of twisted field lines, which can represent a sigmoid structure. The rotation of the magnetic bipole may cause the twisting of magnetic field lines. The activity of the sigmoid may be caused by collision between the positive polarity and a nearby negative polarity field region. The sigmoid displayed an ascending motion and then interacted intensively with the spine-like field. This type of null point reconnection in corona led to a violent blowout jet, and a quasi-circular flare ribbon was also produced. The magnetic emergence and rotational motion are the main contributors to the energy buildup for the flare, while the cancellation and collision might act as a trigger.By analyzing the observations obtained from the SDO and GONG on 2015 February 6, we present an observation of the interaction between a filament and coronal loops nearby the null point that produces a blowout surge. The activated filament is initially embedded below a dome of a fan-spine configuration. Due to the ascending motion, the erupting filament reconnects with the outer spine-like field. We note that bidirectional flow and small bright blobs appear at the interaction region, which are direct reconnection evidence. As a result, some material of the filament blowout along the spine field line forming surge. We suggest that the successive reconnection occurring between the erupting filament and the coronal loops may lead to a strong thermal/magnetic pressure imbalance, resulting in a blowout surge.In addition, we present a study of a mini-filament erupting in association with a circular ribbon flare on 2014 March 17. The filament was initially located at the edge of sunspot, and the potential field extrapolation shows that it was embedded under a fan spine configuration. This event is different from above mentioned two events. Before the eruption, a circular flare ribbon, as a signature of reconnection at the null point, was observed around the filament at the begin of brightening of the filament. We conjecture that the null point reconnection is of the “breakout” type and facilitates the eruption of the filament by removing field lines above the filament.
学科领域天文学 ; 太阳与太阳系 ; 太阳物理学
学科门类理学 ; 理学::天文学
页数102
语种中文
文献类型学位论文
条目标识符http://ir.ynao.ac.cn/handle/114a53/25387
专题抚仙湖太阳观测和研究基地
作者单位中国科学院云南天文台
第一作者单位中国科学院云南天文台
推荐引用方式
GB/T 7714
李海东. 三维零点位形下喷流的观测研究[D]. 北京. 中国科学院大学,2018.
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