论文标题

太阳耀斑能量分配和运输 - 冲动阶段(Heliophysics 2050白皮书)

Solar Flare Energy Partitioning and Transport -- the Impulsive Phase (a Heliophysics 2050 White Paper)

论文作者

Kerr, Graham S., Alaoui, Meriem, Allred, Joel C., Bian, Nicholas H., Dennis, Brian R., Emslie, A. Gordon, Fletcher, Lyndsay, Guidoni, Silvina, Hayes, Laura A., Holman, Gordon D., Hudson, Hugh S., Karpen, Judith T., Kowalski, Adam F., Milligan, Ryan O., Polito, Vanessa, Qiu, Jiong, Ryan, Daniel F.

论文摘要

太阳耀斑是太阳喷发事件的基本组成部分(See;以及太阳能颗粒,SEP和冠状质量弹出,CMES)。耀斑是影响我们大气的第一个组成部分,它可以为相关的SEP和CME的到来树立阶段。磁重新连接通过重组太阳能冠状磁场,释放大量的能量,这些能量被划分为各种物理表现:颗粒加速度,质量和磁场喷发,大气加热以及随后作为太阳能发射的辐射发射。为了解释并最终预测这些地理效果事件,Heliophysics群落需要对将存储的磁能转换和分配到其他形式的过程中,包括宽带辐射的增强,以表征耀斑的宽带辐射增强。这份白皮书已提交给Heliophysics 2050研讨会,讨论了See的闪光冲动阶段部分,并提出了需要通过理论,建模和观察性研究的结合来解决的问题。简而言之,到2050年,我们必须确定粒子加速度和繁殖的机理,并且必须超越通过非热电子束的能量传输范式,以考虑加速的质子和离子和向下定向的alfven波。

Solar flares are a fundamental component of solar eruptive events (SEEs; along with solar energetic particles, SEPs, and coronal mass ejections, CMEs). Flares are the first component of the SEE to impact our atmosphere, which can set the stage for the arrival of the associated SEPs and CME. Magnetic reconnection drives SEEs by restructuring the solar coronal magnetic field, liberating a tremendous amount of energy which is partitioned into various physical manifestations: particle acceleration, mass and magnetic-field eruption, atmospheric heating, and the subsequent emission of radiation as solar flares. To explain and ultimately predict these geoeffective events, the heliophysics community requires a comprehensive understanding of the processes that transform and distribute stored magnetic energy into other forms, including the broadband radiative enhancement that characterises flares. This white paper, submitted to the Heliophysics 2050 Workshop, discusses the flare impulsive phase part of SEEs, setting out the questions that need addressing via a combination of theoretical, modelling, and observational research. In short, by 2050 we must determine the mechanisms of particle acceleration and propagation, and must push beyond the paradigm of energy transport via nonthermal electron beams, to also account for accelerated protons & ions and downward directed Alfven waves.

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