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Exploring impulsive solar magnetic energy release and particle acceleration with focused hard X-ray imaging spectroscopy

机译:利用聚焦硬X射线成像光谱探索脉冲太阳磁能释放和粒子加速

摘要

How impulsive magnetic energy release leads to solar eruptions and how those eruptions are energized and evolve are vital unsolved problems in Heliophysics. The standard model for solar eruptions summarizes our current understanding of these events. Magnetic energy in the corona is released through drastic restructuring of the magnetic field via reconnection. Electrons and ions are then accelerated by poorly understood processes. Theories include contracting loops, merging magnetic islands, stochastic acceleration, and turbulence at shocks, among others. Although this basic model is well established, the fundamental physics is poorly understood. HXR observations using grazing-incidence focusing optics can now probe all of the key regions of the standard model. These include two above-the-looptop (ALT) sources which bookend the reconnection region and are likely the sites of particle acceleration and direct heating. The science achievable by a direct HXR imaging instrument can be summarized by the following science questions and objectives which are some of the most outstanding issues in solar physics (1) How are particles accelerated at the Sun? (1a) Where are electrons accelerated and on what time scales? (1b) What fraction of electrons is accelerated out of the ambient medium? (2) How does magnetic energy release on the Sun lead to flares and eruptions? A Focusing Optics X-ray Solar Imager (FOXSI) instrument, which can be built now using proven technology and at modest cost, would enable revolutionary advancements in our understanding of impulsive magnetic energy release and particle acceleration, a process which is known to occur at the Sun but also throughout the Universe.
机译:脉冲磁能的释放如何导致太阳喷发以及这些喷发如何被激发和演化是太阳物理中尚未解决的重要问题。太阳爆发的标准模型总结了我们目前对这些事件的理解。电晕中的磁能通过重新连接通过剧烈的磁场重组而释放。然后,电子和离子会因人们不了解的过程而加速。理论包括收缩环,合并磁岛,随机加速度和冲击时的湍流等。尽管已经建立了基本模型,但是对基本物理学的理解却很少。使用掠入射聚焦光学器件进行的HXR观测现在可以探测标准模型的所有关键区域。其中包括两个“环上”(ALT)源,这些源在重新连接区域附近,可能是粒子加速和直接加热的位置。直接HXR成像仪可实现的科学可以归纳为以下科学问题和目标,这些问题和目标是太阳物理学中一些最突出的问题(1)如何在太阳上加速粒子? (1a)电子在哪里加速,在什么时间尺度上加速? (1b)有多少电子从环境介质中被加速出来? (2)太阳上释放的磁能如何导致耀斑和喷发?聚焦光学X射线太阳成像仪(FOXSI)仪器,现在可以使用成熟的技术制造,并且成本适中,这将使我们对脉冲磁能释放和粒子加速的理解有了革命性的进步,这一过程众所周知地发生在太阳也遍及整个宇宙。

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