论文标题

SI I 10827的三角分析能力分析一条线,用于估计安静的太阳速度的线

Capabilities of bisector analysis of the Si I 10827 A line for estimating line-of-sight velocities in the quiet Sun

论文作者

Manrique, S. J. González, Noda, C. Quintero, Kuckein, C., Cobo, B. Ruiz, Carlsson, M.

论文摘要

我们研究了一种快速而简单的方法,可以从光电SI I 10827 A线上从观察结果中推断出视线(LOS)速度。该光谱线通常与色层He I 10830一起观察到三胞胎,因为它有助于限制大气参数。我们研究了双层分析的准确性和SI I 10827A的线核拟合。我们采用了从Bifrost增强网络仿真开始的合成轮廓。该轮廓是计算出求解辐射传递方程的,包括非本地热力学平衡对确定Si I的原子水平种群的确定的非本地热力学平衡效应,我们发现在不同线轮廓强度下,从不同线轮廓强度下采用的两种速度与原始模拟速度在给定的光学速度下具有良好的相关性。这种良好的相关性意味着我们可以将以不同线条倍数的百分比与大气层相关联,随着我们扫描较低的光谱线强度,它们会线性增加。我们还确定,适合线路强度的强度是稳健且可靠的,提供了有关大气层的信息,这些信息超过了通过双压访问的层。因此,通过将这两种方法组合在Si I 10827 A线上,我们可以无缝地追踪从深光球到较高层的安静的LOS速度分层,直到以快速而直接的方式左右。该方法是为未来任务(例如Daniel K. Inoue太阳能望远镜和欧洲太阳能望远镜)生成快速外观参考图像的理想选择。

We examine the capabilities of a fast and simple method to infer line-of-sight (LOS) velocities from observations of the photospheric Si I 10827 A line. This spectral line is routinely observed together with the chromospheric He I 10830 A triplet as it helps to constrain the atmospheric parameters. We study the accuracy of bisector analysis and a line core fit of Si I 10827 A. We employ synthetic profiles starting from the Bifrost enhanced network simulation. The profiles are computed solving the radiative transfer equation, including non-local thermodynamic equilibrium effects on the determination of the atomic level populations of Si I. We found a good correlation between the inferred velocities from bisectors taken at different line profile intensities and the original simulation velocity at given optical depths. This good correlation means that we can associate bisectors taken at different line-profile percentages with atmospheric layers that linearly increase as we scan lower spectral line intensities. We also determined that a fit to the line-core intensity is robust and reliable, providing information about atmospheric layers that are above those accessible through bisectors. Therefore, by combining both methods on the Si I 10827 A line, we can seamlessly trace the quiet-Sun LOS velocity stratification from the deep photosphere to higher layers until around $\log τ= -3.5$ in a fast and straightforward way. This method is ideal for generating quick-look reference images for future missions like the Daniel K. Inoue Solar Telescope and the European Solar Telescope, for example.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源