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Dynamics of filaments, flares and coronal mass ejections (CMEs).

机译:细丝,耀斑和日冕物质抛射(CME)的动力学。

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摘要

The objective of this dissertation is to investigate the connection between the dynamics of solar surface phenomena such as filament eruptions, flares, the coronal mass ejections (CMEs), the core of so-called solar activity, and the properties of the associated magnetic field for the development of forecasts of solar activity and space weather. Both statistical and case studies have been carried out.; The topics covered in this dissertation are: the statistical relationship among phenomena of solar activity, in particular, filament eruptions, flares and coronal mass ejections (CMEs); the correlation between magnetic reconnection rate and flux rope acceleration of two-ribbon flares; the correlation between magnetic twist of linear-force-free active region and solar eruptions; a case analysis of a quiet-sun flare associated with an erupting filament and a fast CME; a case analysis of the periodic motion along a filament initiated by a subflare; and a case analysis of the evolution of the twist of an eruptive filament.; The findings and results confirm some of the theories and conjectures previously proposed and put forth some new insights into the physics of phenomena of solar activity, briefly summarized as follows: (1) a statistical relationship is found among filament eruptions, flares and CMEs; (2) the majority of filament eruptions is found to be associated with new magnetic flux emergence within or adjacent to the eruptive filament; (3) a rapid increase in pitch angle of the twisted structure of an eruptive filament appears to be a trigger of the solar eruption; (4) the hemispheric chirality preferences of quiescent filaments is confirmed; (5) the geoeffectiveness of halo CMEs is found to be associated with the orientation and the chirality of the magnetic fields associated with the eruptions; (6) the temporal correlation between the magnetic reconnection rate and the flare nonthermal emission is verified; (7) the coronal magnetic reconnection is found to be inhomogeneous along the flare ribbons; (8) a positive and strong correlation is found between magnetic reconnection rate and the acceleration of eruptive filaments which represents the early stages of flux rope eruptions in the low corona; and (9) a special type of periodic mass motion in a filaments is reported that remains a challenge to the classical and recent filament models and may provide information on the existence of the filaments.
机译:本论文的目的是研究太阳表面现象的动力学之间的联系,例如细丝爆发,耀斑,日冕物质抛射(CMEs),所谓太阳活动的核心以及与之相关的磁场性质之间的联系。太阳活动和太空天气预报的发展。统计和案例研究均已进行。本文涉及的主题是:太阳活动现象之间的统计关系,特别是细丝喷发,耀斑和日冕物质抛射(CMEs)之间的统计关系;磁重连率与两根耀斑的磁通量绳加速度之间的相关性;无线性力的有源区的磁扭曲与太阳爆发之间的关系;对与爆发的灯丝和快速的CME有关的安静的太阳耀斑的案例分析;案例分析:由亚光斑引发的沿丝的周期性运动;并分析了喷发丝的扭曲演变。这些发现和结果证实了先前提出的一些理论和猜想,并对太阳活动现象的物理学提出了一些新的见解,简要总结如下:(1)在花丝喷发,耀斑和CME之间发现了一种统计关系; (2)发现大多数细丝喷发与喷发细丝内部或附近出现新的磁通有关; (3)喷发灯丝的扭曲结构的俯仰角的迅速增加似乎是引发太阳喷发的诱因; (4)确认了静态长丝的半球形手性偏好; (5)发现晕波CME的地球有效性与与喷发有关的磁场的方向和手性有关; (6)验证了磁重合率与火炬非热辐射之间的时间相关性; (7)发现沿耀斑带的冠状磁重新连接不均匀; (8)在磁重联速率与喷发细丝的加速度之间存在正相关和强相关性,这代表了低电晕中磁链爆炸的早期阶段; (9)据报道,长丝中的一种特殊类型的周期性质量运动仍然对经典和最新的长丝模型构成挑战,并可能提供有关长丝存在的信息。

著录项

  • 作者

    Jing, Ju.;

  • 作者单位

    New Jersey Institute of Technology.;

  • 授予单位 New Jersey Institute of Technology.;
  • 学科 Physics Astronomy and Astrophysics.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;
  • 关键词

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