论文标题

Insight-HXMT,Rhessi和Fermi揭示的肢体太阳耀斑的X射线细胞结构

X-ray fine structure of a limb solar flare revealed by Insight-HXMT, RHESSI and Fermi

论文作者

Zhang, Ping, Wang, Wei, Su, Yang, Zhang, Shuangnan, Song, Liming, Lu, Fangjun, Zhang, Shu

论文摘要

我们对2017年7月3日发生的M1.3肢体耀斑进行了详细分析,该肢体的观察值是由多个硬X射线望远镜记录的,包括硬X射线调制望远镜(Insight-HXMT),Ramaty Ramaty高能能量溶液Solar Specroscopic Imaker(Rhessi)(Rhessi)和Fermi Gamma-ray ray Space(Fermi Gamma-ray Space)(Fermi Gamma-ray Space)(Fermi Gamma-Ray Spess)(Fermi Gamma-ray Speess)(Fermi Gamma-Ray Space)。联合分析还使用了太阳动态天文台上的大气成像组件(AIA)的EUV成像数据。硬X射线频谱和成像演化表明了较低的电晕源,而非热的功率法分布具有相当低的断裂能量$ \ sim $ 15 kev。 EUV成像在硬X射线峰相之前显示出相当稳定的等离子体构型,并伴随着硬X射线耀斑峰相期间的细丝喷发。来自Rhessi数据的硬X射线图像重建仅显示一个脚点源。我们还通过SDO/AIA数据确定了峰阶段的DEM。峰值阶段之后的脚步开始时,集成的EM超过10 MK,而重新连接站点周围的10美元频率却开始逐渐消失。 EM和硬X射线源的演变支持非热能耗散后的较低的电晕等离子体加热。肢体耀斑期间硬X射线光谱和图像的组合提供了对非热和热能的互换互换的理解,以及下电晕加热与上部电晕上不稳定性之间的关系。

We conduct a detailed analysis of an M1.3 limb flare occurring on 2017 July 3, which have the X-ray observations recorded by multiple hard X-ray telescopes, including Hard X-ray Modulation Telescope (Insight-HXMT), Ramaty High Energy Solar Spectroscopic Imager (RHESSI), and The Fermi Gamma-ray Space Telescope (FERMI). Joint analysis has also used the EUV imaging data from the Atmospheric Imaging Assembly (AIA) aboard the Solar Dynamic Observatory. The hard X-ray spectral and imaging evolution suggest a lower corona source, and the non-thermal broken power law distribution has a rather low break energy $\sim$ 15 keV. The EUV imaging shows a rather stable plasma configuration before the hard X-ray peak phase, and accompanied by a filament eruption during the hard X-ray flare peak phase. Hard X-ray image reconstruction from RHESSI data only shows one foot point source. We also determined the DEM for the peak phase by SDO/AIA data. The integrated EM beyond 10 MK at foot point onset after the peak phase, while the $>$ 10 MK source around reconnection site began to fade. The evolution of EM and hard X-ray source supports lower corona plasma heating after non-thermal energy dissipation. The combination of hard X-ray spectra and images during the limb flare provides the understanding on the interchange of non-thermal and thermal energies, and relation between lower corona heating and the upper corona instability.

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