论文标题

在太阳耀斑的冲动阶段,非热的准周期脉动的多个区域

Multiple Regions of Nonthermal Quasi-Periodic Pulsations during the Impulsive Phase of a Solar Flare

论文作者

Luo, Yingjie, Chen, Bin, Yu, Sijie, Battaglia, Marina, Sharma, Rohit

论文摘要

无线电和X射线波长(尤其是与非热电子相关的X射线波长)中与耀斑相关的准静脉脉动(QPP)包含有关耀斑期间能量释放和传输过程的重要信息。但是,对这种QPP的空间解决观察很少,这是我们进一步理解其物理性质的障碍。在这里,我们报告了使用Karl G. Jansky的无线电成像光谱数据的C1.8级喷发太阳耀斑在冲动阶段发生的QPP事件的观察结果。无线电QPP由VLA在1--2 GHz中观察到,带有次要的节奏,显示为三个具有不同物理特征的空间不同的来源。两个无线电源位于爆发的磁通绳的共轭脚点附近,具有相反的极化感。其中一个来源显示了约5 s的QPP行为。第三个无线电源位于后Flare Arcade的顶部,与X射线源的位置相吻合,共享相似的时期约25--45 s。我们表明,这两个相对极化的无线电源可能是由于相干电子旋转岩(ECM)发射引起的。另一方面,在无线电和X射线中观察到的Looptop QPP源分别与不一致的Gyrosynchrotron和Bremsstrahlung发射一致。我们得出的结论是,同时但在空间上不同的QPP来源必须涉及多种机制,这些机制在不同的磁环系统和不同时期内运行。

Flare-associated quasiperiodic pulsations (QPPs) in radio and X-ray wavelengths, particularly those related to nonthermal electrons, contain important information about the energy release and transport processes during flares. However, the paucity of spatially resolved observations of such QPPs with a fast time cadence has been an obstacle for us to further understand their physical nature. Here, we report observations of such a QPP event that occurred during the impulsive phase of a C1.8-class eruptive solar flare using radio imaging spectroscopy data from the Karl G. Jansky Very Large Array (VLA) and complementary X-ray imaging and spectroscopy data. The radio QPPs, observed by the VLA in the 1--2 GHz with a subsecond cadence, are shown as three spatially distinct sources with different physical characteristics. Two radio sources are located near the conjugate footpoints of the erupting magnetic flux rope with opposite senses of polarization. One of the sources displays a QPP behavior with a ~5 s period. The third radio source, located at the top of the postflare arcade, coincides with the location of an X-ray source and shares a similar period of ~25--45 s. We show that the two oppositely polarized radio sources are likely due to coherent electron cyclotron maser (ECM) emission. On the other hand, the looptop QPP source, observed in both radio and X-rays, is consistent with incoherent gyrosynchrotron and bremsstrahlung emission, respectively. We conclude that the concurrent, but spatially distinct QPP sources must involve multiple mechanisms which operate in different magnetic loop systems and at different periods.

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