论文标题

研究通过光谱线扩展和不对称的太阳颗粒中对流湍流的动力学研究

Study of the Dynamics of Convective Turbulence in the Solar Granulation by Spectral Line Broadening and Asymmetry

论文作者

Ishikawa, Ryohtaroh T., Katsukawa, Yukio, Oba, Takayoshi, Nakata, Motoki, Nagaoka, Kenichi, Kobayashi, Tatsuya

论文摘要

在太阳表面的安静区域中,砂状的湍流对流运动在产生小规模的磁性结构以及对高层大气的能量注入方面起着重要作用。可以使用光谱线轮廓,尤其是线扩展来研究颗粒的湍流性质,其中包含小于仪器空间分辨率的流场的信息。此外,沿视线(LOS)的多普勒速度梯度也会引起线扩展。但是,速度梯度和线扩展之间的定量关系尚未得到很好的理解。在这项研究中,我们使用使用HINODE/太阳光学望远镜的光光学计获得的光谱曲线进行了双层分析,以研究线扩展和三下速度与颗粒流的关系。结果表明,线扩展与沿LOS的多普勒速度梯度有正相关。我们发现褪色颗粒的线宽度过多,这不能仅通过LOS速度梯度来解释,尽管速度梯度在褪色过程中得到了增强。如果该过多的线扩展归因于小规模的湍流运动,则平均湍流速度为0.9 km/s。

In the quiet regions on the solar surface, turbulent convective motions of granulation play an important role in creating small-scale magnetic structures, as well as in energy injection into the upper atmosphere. The turbulent nature of granulation can be studied using spectral line profiles, especially line broadening, which contains information on the flow field smaller than the spatial resolution of an instrument. Moreover, the Doppler velocity gradient along a line-of-sight (LOS) causes line broadening as well. However, the quantitative relationship between velocity gradient and line broadening has not been understood well. In this study, we perform bisector analyses using the spectral profiles obtained using the Spectro-Polarimeter of the Hinode/Solar Optical Telescope to investigate the relationship of line broadening and bisector velocities with the granulation flows. The results indicate that line broadening has a positive correlation with the Doppler velocity gradients along the LOS. We found excessive line broadening in fading granules, that cannot be explained only by the LOS velocity gradient, although the velocity gradient is enhanced in the process of fading. If this excessive line broadening is attributed to small-scale turbulent motions, the averaged turbulent velocity is obtained as 0.9 km/s.

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