论文标题

反埃面流动的中心到中线变化

Center-to-Limb Variation of the Inverse Evershed Flow

论文作者

Beck, C., Choudhary, D. P., Ranganathan, M.

论文摘要

我们基于在11个日光点中的等离子体速度和环路几何形状的中心速度变化和环路几何形状的中心对LIMB变化的特性,该速度和环路几何形状位于11个日光点中,这些日光点位于12至79度的范围广泛。观测值是在Halpha的光谱线的Dunn太阳能望远镜上获得的,在656nm的光谱线,Caii IR为854 nm,HEI在1083 nm处获得。所有黑子在肢体和中央侧都显示相反的视线(LOS)速度,在外部半边缘附近具有明显的冲击标志。我们开发了一个简化的柔性黑子模型,假设轴对称并在已知环几何形状下开处方径向流量速度曲线,以在不同的视角下复制观察到的二维IEF模式。模拟流图与10-20毫米长的色球环路的观测值开始,从0.8-1.1 Sunspot Radii开始,最高高度为2-3mm,真正的恒定流速为2-9 km/s。我们平均发现模拟速度和对黑子周围椭圆形的观测值的良好一致。各个IEF通道的性质范围很大,最大LOS速度最高为12km/s。向上或向下的定向流并未显示出在30度以上的HeliePentric角度的LOS速度中的符号变化。我们的结果与IEF是由虹吸管流动机制引起的,沿着高高的环中的恒定声速以恒定的声速驱动流动,并在染色体中具有扁平的顶部。

We present the properties of the inverse Evershed flow (IEF) based on the center-to-limb variation of the plasma speed and loop geometry of chromospheric superpenumbral fibrils in eleven sunspots that were located at a wide range of heliocentric angles from 12 to 79 deg. The observations were acquired at the Dunn Solar Telescope in the spectral lines of Halpha at 656nm, CaII IR at 854 nm and HeI at 1083 nm. All sunspots display opposite line-of-sight (LOS) velocities on the limb and center side with a distinct shock signature near the outer penumbral edge. We developed a simplified flexible sunspot model assuming axisymmetry and prescribing the radial flow speed profile at a known loop geometry to replicate the observed two-dimensional IEF patterns under different viewing angles. The simulated flow maps match the observations for chromospheric loops with 10-20 Mm length starting at 0.8-1.1 sunspot radii, an apex height of 2-3Mm and a true constant flow speed of 2-9km/s. We find on average a good agreement of the simulated velocities and the observations on elliptical annuli around the sunspot. Individual IEF channels show a significant range of variation in their properties and reach maximal LOS speeds of up to 12km/s. Upwards or downwards directed flows do not show a change of sign in the LOS velocities for heliocentric angles above 30 deg. Our results are consistent with the IEF being caused by a siphon flow mechanism driving a flow at a constant sonic speed along elevated loops with a flattened top in the chromosphere.

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