论文标题

太阳突出期间的冠状力的遥感

Remote Sensing of Coronal Forces During a Solar Prominence Eruption

论文作者

Uritsky, V. M., Thompson, B. J., DeVore, C. R.

论文摘要

我们提出了一种新的方法论 - 开普勒光学动力学分析(KODA),用于分析太阳能电晕中致密,凉爽材料的动力学。该技术涉及传播强度梯度的自适应时空跟踪及其在随时不断发展的开普勒区域的表征,被移动的等离子体斑点的位置向量所扫除。尽管重力诱发了与开普勒第二定律一致的纯弹道运动,但诸如洛伦兹力等非中心力引入了非零扭矩,导致更复杂的运动。 KODA算法可以从面积加速度的图像平面投影中直接评估净扭矩密度的视线成分。该方法应用于2011年6月7日的突出爆发,由太阳能观测站的大气成像组件观察到。获得的结果包括对磁力,场强度和斑点质量和能量的定量估计,并受到突出材料的重新连接重新分布影响的广泛区域。在喷发的早期,上升阶段,磁压力和能量是强大的,而动态压力和动能在随后的下降阶段中成为重要的贡献者。斑点斑点的测量密集特性与典型的活动区突出相一致。将测量的广泛特性与整个爆发前的突出和2011年6月7日的爆发后冠状质量射出相提并论,所有这些特性都是由其他研究者和技术得出的。我们认为,Koda提供了有关爆发突出的特征的有价值的信息,这些信息不容易通过替代手段获得,从而为其环境和演变提供了新的启示。

We present a new methodology -- the Keplerian Optical Dynamics Analysis (KODA) -- for analyzing the dynamics of dense, cool material in the solar corona. The technique involves adaptive spatiotemporal tracking of propagating intensity gradients and their characterization in terms of time-evolving Keplerian areas swept out by the position vectors of moving plasma blobs. Whereas gravity induces purely ballistic motions consistent with Kepler's second law, non-central forces such as the Lorentz force introduce non-zero torques resulting in more complex motions. KODA algorithms enable direct evaluation of the line-of-sight component of the net torque density from the image-plane projection of the areal acceleration. The method is applied to the prominence eruption of 2011 June 7, observed by the Solar Dynamics Observatory's Atmospheric Imaging Assembly. Results obtained include quantitative estimates of the magnetic forces, field intensities, and blob masses and energies across a vast region impacted by the post-reconnection redistribution of the prominence material. The magnetic pressure and energy are strongly dominant during the early, rising phase of the eruption, while the dynamic pressure and kinetic energy become significant contributors during the subsequent falling phases. Measured intensive properties of the prominence blobs are consistent with those of typical active-region prominences; measured extensive properties are compared with those of the whole pre-eruption prominence and the post-eruption coronal mass ejection of 2011 June 7, all derived by other investigators and techniques. We argue that KODA provides valuable information on characteristics of erupting prominences that are not readily available via alternative means, thereby shedding new light on their environment and evolution.

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