论文标题
关于日出/imax揭示的爆炸颗粒的磁性
On the Magnetic Nature of an Exploding Granule as Revealed by Sunrise/IMaX
论文作者
论文摘要
我们研究了在高空间($ 0.3^{\ prime \ prime} $上观察到的爆炸颗粒的光球演变,并通过成像磁矩磁力日出/imax在2009年6月在时间上(31.5 s)的分辨率(31.5 s)。 mm $^{2} $区域)。使用修改版的SIR代码版本来反转IMAX光谱测量值,我们获得了有关此光电特征的磁性配置的信息。特别是,我们发现结构中高度倾斜的新兴场的证据,载有磁通量的含量高达$ 4 \ times 10^{18} $ mx。与太阳的非常安静的区域相比,气体出现区域中气体和磁压之间的平衡表明,如数值模拟所预测的那样,新出现的通量携带的额外压力增加了总压力,似乎可以修改颗粒状。总体特征表明,多极性结构出现到光球中,类似于几乎水平的通量板。这似乎与爆炸颗粒有关。最后,我们讨论了此类磁通出现事件的起源。
We study the photospheric evolution of an exploding granule observed in the quiet Sun at high spatial ($0.3^{\prime\prime}$) and temporal (31.5 s) resolution by the imaging magnetograph Sunrise/IMaX in June 2009. These observations show that the exploding granule is cospatial to a magnetic flux emergence event occurring at mesogranular scale (up to 12 Mm$^{2}$ area). Using a modified version of the SIR code for inverting the IMaX spectropolarimetric measurements, we obtain information about the magnetic configuration of this photospheric feature. In particular, we find evidence of highly inclined emerging fields in the structure, carrying a magnetic flux content up to $4 \times 10^{18}$ Mx. The balance between gas and magnetic pressure in the region of flux emergence, compared with a very quiet region of the Sun, indicates that the additional pressure carried by the emerging flux increases by about 5% the total pressure and appears to allow the granulation to be modified, as predicted by numerical simulations. The overall characteristics suggest that a multi-polar structure emerges into the photosphere, resembling an almost horizontal flux sheet. This seems to be associated with exploding granules. Finally, we discuss the origin of such flux emergence events.