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Multi-mode quasi-periodic pulsations in a solar flare

机译:太阳耀斑中的多模准周期脉动

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Context. Quasi-periodic pulsations (QPP) of the electromagnetic radiation emitted in solar and stellar flares are often detected in microwave, white light, X-ray, and gamma-ray bands. Mechanisms for QPP are intensively debated in the literature. Previous studies revealed that QPP may manifest non-linear, non-stationary and, perhaps, multi-modal processes operating in flares. Aims. We study QPP of the microwave emission generated in an X3.2-class solar flare on 14 May, 2013, observed with the Nobeyama Radioheliograph (NoRH), aiming to reveal signatures of the non-linear, non-stationary, and multi-modal processes in the signal. Methods. The NoRH correlation signal obtained at the 17 GHz intensity has a clear QPP pattern. The signal was analysed with the Hilbert-Huang transform (HHT) that allows one to determine its instant amplitude and frequency, and their time variation. Results. It was established that the QPP consists of at least three well-defined intrinsic modes, with the mean periods of 15, 45, and 100 s. All the modes have quasi-harmonic behaviour with different modulation patterns. The 100 s intrinsic mode is a decaying oscillation, with the decay time of 250 s. The 15 s intrinsic mode shows a similar behaviour, with the decay time of 90 s. The 45 s mode has a wave-train behaviour. Conclusions. Dynamical properties of detected intrinsic modes indicate that the 100 s and 15 s modes are likely to be associated with fundamental kink and sausage modes of the flaring loop, respectively. The 100 s oscillation could also be caused by the fundamental longitudinal mode, while this interpretation requires the plasma temperature of about 30 million K and hence is not likely. The 45 s mode could be the second standing harmonics of the kink mode.
机译:上下文。通常在微波,白光,X射线和伽马射线波段中检测到太阳耀斑和恒星耀斑中发出的电磁辐射的准周期脉动(QPP)。文献中对QPP的机制进行了激烈的辩论。先前的研究表明,QPP可能表现出在火炬中运行的非线性,非平稳甚至多峰过程。目的我们利用Nobeyama Radioheliograph(NoRH)于2013年5月14日研究了X3.2级太阳耀斑产生的微波发射的QPP,旨在揭示非线性,非平稳和多模式的特征信号中的过程。方法。在17 GHz强度下获得的NoRH相关信号具有清晰的QPP模式。使用希尔伯特-黄(Hilbert-Huang)变换(HHT)分析了该信号,从而可以确定其瞬时幅度和频率及其时间变化。结果。已经确定,QPP至少包含三个明确定义的固有模式,平均周期为15、45和100 s。所有模式都具有具有不同调制模式的准谐波行为。 100 s本征模式是一个衰减振荡,衰减时间为250 s。 15 s固有模式显示出类似的行为,衰减时间为90 s。 45 s模式具有波列行为。结论。检测到的固有模式的动力学特性表明100 s和15 s模式可能分别与喇叭形回路的基本扭结模式和香肠模式相关。 100 s的振荡也可能是由基本纵向模式引起的,而这种解释要求等离子温度约为3000万K,因此不太可能。 45 s模式可能是扭结模式的第二次谐波。

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