Paired quasi-periodic pulsations of hard X-ray emission in a solar flare

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作者
Hai-Sheng Zhao
Dong Li
Shao-Lin Xiong
Yan-Qiu Zhang
Yang Su
Wei Chen
Yi Zhao
Xiao-Bo Li
Jia-Cong Liu
Wen-Xi Peng
Rui Qiao
Xin-Qiao Li
Xiang-Yang Wen
Li-Ming Song
Shi-Jie Zheng
Xin-Ying Song
Xiao-Yun Zhao
Yue Huang
Shuang-Nan Zhang
Shuo Xiao
Ce Cai
Zheng-Hua An
Can Chen
Gang Chen
Wei Chen
Yan-Qi Du
Min Gao
Ke Gong
Dong-Ya Guo
Zhi-Wei Guo
Jian-Jian He
Bin Li
Chao Li
Chao-Yang Li
Gang Li
Jian-Hui Li
Lu Li
Qing-Xin Li
Yan-Guo Li
Jing Liang
Xiao-Hua Liang
Jin-Yuan Liao
Xiao-Jing Liu
Ya-Qing Liu
Qi Luo
Xiang Ma
Bin Meng
Ge Ou
Dong-Li Shi
Jing-Yan Shi
机构
[1] Chinese Academy of Sciences,Key Laboratory for Particle Astrophysics, Institute of High Energy Physics
[2] Chinese Academy of Sciences,Purple Mountain Observatory
[3] University of Chinese Academy of Sciences,Department of Astronomy
[4] Beijing Normal University,School of Computing and Artificial Intelligence
[5] Southwest Jiaotong University,Physics and Space Science College
[6] China West Normal University,Key Laboratory of Stellar and Interstellar Physics and Department of Physics
[7] Xiangtan University,Institute of Astrophysics
[8] Central China Normal University,School of Physics
[9] Changchun University of Science and Technology,College of Physics and Engineering
[10] Qufu Normal University,College of Physics Sciences & Technology
[11] Hebei University,undefined
关键词
solar flare; QPPs; loop coalescence; circular-ribbon flare;
D O I
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摘要
We investigate high time resolution data obtained by the Gravitational wave high-energy Electromagnetic Counterpart All-sky Monitor (GECAM) during the flare event on 2022 April 21 at 01:52 UT. Several subpeaks with durations of 4–6s have been detected in the hard X-ray precursor phase, and the key feature is that they appear in pairs and seem like double-peak structures. These subpeaks are rarely observed in hard X-ray band and confirmed by the microwave obtained by Nobeyama Radio Polarimeters (NoRP) and Radio Solar Telescope Network (RSTN). While an exponential function can describe the continuum component of the time profile from the precursor to part of the impulsive phase. The periods of quasi-periodic pulsations (QPPs) are detected to be about 7.3 and 12.8s for the precursor and impulsive phase, respectively, with at least 95% confidence level. The paired QPPs are assumed to be double-peak QPPs and then the scenario of current loop coalescence model is found to be in good agreement with our observation. The precursor phase can be interpreted as the oscillating coalescence of two islands, while the impulsive phase can be interpreted as more islands to coalesce one by one to form larger islands.
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