论文标题

太阳耀斑的湍流和振荡激发的数值研究

Numerical Study on Excitation of Turbulence and Oscillation in Above-the-loop-top Region of a Solar Flare

论文作者

Shibata, Kengo, Takasao, Shinsuke, Reeves, Katharine K.

论文摘要

极端的紫外成像光谱观测通常显示出太阳耀斑的循环顶部或循环顶部(ALT)区域周围的线宽度增加,这表明湍流。此外,最近的光谱观察结果发现ALT区域周围的多普勒速度的振荡。我们进行了三维磁流失动力学(MHD)模拟,以研究ALT区域的动力学,特别关注湍流的产生和振动运动的激发。我们发现在ALT区域上部(磁性叉的臂)周围的MHD不稳定性迅速生长。与重新连接电流纸的密度接口处的磁性雷利 - 泰勒型不稳定性相比,不稳定性的生长更快。最终,Alt区域充满了湍流。磁性调谐叉的臂具有不良曲面和跨气流。因此,我们认为快速增长的不稳定性是压力驱动和离心驱动的雷利 - 泰勒型不稳定性的组合。尽管存在湍流,但ALT区域显示了由重新连接射流的回流驱动的连贯振荡。我们通过重新分析Reeves等人的太阳耀斑来检查数值结果。 2020年。我们发现,最高的非热速度始终位于存在振荡的Alt区域的最高速度。这个结果与我们的模型一致。我们还认为,湍流磁场对ALT区域非热电子的限制具有重大影响。

Extreme ultraviolet imaging spectroscopic observations often show an increase in line width around the loop-top or above-loop-top (ALT) region of solar flares, suggestive of turbulence. In addition, recent spectroscopic observations found the oscillation in the Doppler velocity around the ALT region. We performed three-dimensional magnetohydrodynamic (MHD) simulations to investigate the dynamics in the ALT region, with a particular focus on the generation of turbulence and the excitation of the oscillatory motion. We found a rapid growth of MHD instabilities around the upper parts of the ALT region (arms of the magnetic tuning fork). The instabilities grow more rapidly than the magnetic Rayleigh-Taylor-type instabilities at the density interface beneath the reconnecting current sheet. Eventually, the ALT region is filled with turbulent flows. The arms of the magnetic tuning fork have bad-curvature and transonic flows. Therefore, we consider that the rapidly growing instabilities are combinations of pressure-driven and centrifugally driven Rayleigh-Taylor-type instabilities. Despite the presence of turbulent flows, the ALT region shows a coherent oscillation driven by the backflow of the reconnection jet. We examine the numerical results by re-analyzing the solar flare presented in Reeves et al. 2020. We find that the highest non-thermal velocity is always at the uppermost visible edge of the ALT region, where oscillations are present. This result is consistent with our models. We also argue that the turbulent magnetic field has a significant impact on the confinement of non-thermal electrons in the ALT region.

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