Microwave imaging of quasi-periodic pulsations at flare current sheet

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作者
Yuankun Kou
Xin Cheng
Yulei Wang
Sijie Yu
Bin Chen
Eduard P. Kontar
Mingde Ding
机构
[1] Nanjing University,School of Astronomy and Space Science
[2] Key Laboratory of Modern Astronomy and Astrophysics (Nanjing University),Center for Solar
[3] Ministry of Education,Terrestrial Research
[4] Max Planck Institute for Solar System Research,School of Physics & Astronomy
[5] New Jersey Institute of Technology,undefined
[6] University of Glasgow,undefined
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Quasi-periodic pulsations (QPPs) are frequently detected in solar and stellar flares, but the underlying physical mechanisms are still to be ascertained. Here, we show microwave QPPs during a solar flare originating from quasi-periodic magnetic reconnection at the flare current sheet. They appear as two vertically detached but closely related sources with the brighter ones located at flare loops and the weaker ones along the stretched current sheet. Although the brightness temperatures of the two microwave sources differ greatly, they vary in phase with periods of about 10–20 s and 30–60 s. The gyrosynchrotron-dominated microwave spectra also present a quasi-periodic soft-hard-soft evolution. These results suggest that relevant high-energy electrons are accelerated by quasi-periodic reconnection, likely arising from the modulation of magnetic islands within the current sheet as validated by a 2.5-dimensional magnetohydrodynamic simulation.
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