论文标题

横向冠状环振荡通过同源圆形丝耀而激发

Transverse coronal loop oscillations excited by homologous circular-ribbon flares

论文作者

Zhang, Q. M., Dai, J., Xu, Z., Li, D., Lu, L., Tam, K. V., Xu, A. A.

论文摘要

我们报告了2014年3月5日在活性区域11991中两种同源圆形 - 丝布耀斑(CRF)的多波长观察结果,重点是激发耀斑激发的极端粉丝(EUV)环的横向振荡。横向振荡是快速站立的扭结模式。 C2.8耀斑触发的第一阶段振荡无衰减,幅度较低(310 $ - $ 510公里)。不同波长的周期(115美元 - 118 s)几乎相同,表明连贯的振荡。环路的磁场估计为65 $ - $ 78 g。由M1.0耀斑触发的第二阶段振荡正在以较大的振幅(1250 $ -1280 km)衰减。这些周期从211Å的117 s减少到171Å的70 s,这意味着逐渐扩展后的环长度或内爆。阻尼时间为147美元 - $ 315 s,随时间段增加,因此$τ/p $的值在不同的波长中彼此接近。在谐振吸收的假设下,不均匀层的厚度估计为$ \ sim $ 0 \ farcs45。这是两个交感神经耀斑对两个扭结模式环振荡激发的首次观察。结果对于理解冠状环的扭结振荡的激发以及太阳电晕的能量平衡很重要。我们的发现还验证了连续驱动因素对振荡显着放大的振幅的流行。

We report our multiwavelength observations of two homologous circular-ribbon flares (CRFs) in active region 11991 on 2014 March 5, focusing on the transverse oscillations of an extreme-ultraviolet (EUV) loop excited by the flares. The transverse oscillations are of fast standing kink-mode. The first-stage oscillation triggered by the C2.8 flare is decayless with lower amplitudes (310$-$510 km). The periods (115$-$118 s) in different wavelengths are nearly the same, indicating coherent oscillations. The magnetic field of the loop is estimated to be 65$-$78 G. The second-stage oscillation triggered by the M1.0 flare is decaying with larger amplitudes (1250$-$1280 km). The periods decreases from 117 s in 211 Å to 70 s in 171 Å, implying a decrease of loop length or an implosion after a gradual expansion. The damping time, being 147$-$315 s, increases with the period, so that the values of $τ/P$ are close to each other in different wavelengths. The thickness of the inhomogeneous layer is estimated to be $\sim$0\farcs45 under the assumption of resonant absorption. This is the first observation of the excitation of two kink-mode loop oscillations by two sympathetic flares. The results are important for understanding of the excitation of kink oscillations of coronal loops and hence the energy balance in the solar corona. Our findings also validate the prevalence of significantly amplified amplitudes of oscillations by successive drivers.

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