论文标题

在太阳能模型中的Mg II H和K极化轮廓的形成及其适合推断磁场

Formation of the Mg II h and k polarization profiles in a solar plage model and their suitability to infer magnetic fields

论文作者

Delgado, David Afonso, Alemán, Tanausú del Pino, Bueno, Javier Trujillo

论文摘要

Mg II H和K线是近紫外线太阳光谱中最强的,它们的线芯源自在过渡区域下方的染色体上。因此,它们已成为研究上太阳大气磁性的主要目标之一。最近的CLASP2任务在活动区域​​中获得了这些线的前所未有的光谱学数据,这些数据已被用来通过应用弱场近似来推断磁场的纵向成分。在本文中,我们旨在通过研究由辐射磁磁性 - 流动力学(RMHD)时间依赖于太阳能块的辐射磁磁性 - 杂化动力学(RMHD)中的辐射转移计算引起的新兴stokes剖面,以提高对这些线路的诊断能力的理解。为此,我们创建了一种综合观察,其时间和空间分辨率类似于CLASP2。我们发现在圆极化合成曲线中有强的不对称性,这使弱场近似的应用变得复杂。我们证明,弱场近似在轮廓中拟合不同光谱区域的选择性应用可以检索有关模型大气不同区域磁场的纵向成分的信息,即使圆形极化轮廓不是反对称的,并且在存在强速度和磁场梯度的情况下也形成。

The Mg II h and k lines are among the strongest in the near-ultraviolet solar spectrum and their line core originates in the upper chromosphere, just below the transition region. Consequently, they have become one of the main targets for investigating the magnetism of the upper solar atmosphere. The recent CLASP2 mission obtained unprecedented spectropolarimetric data of these lines in an active region plage, which have already been used to infer the longitudinal component of the magnetic field by applying the weak field approximation. In this paper, we aim at improving our understanding of the diagnostic capabilities of these lines by studying the emergent Stokes profiles resulting from radiative transfer calculations in a radiative magneto-hydrodynamic (rMHD) time-dependent model representative of a solar plage. To this end, we create a synthetic observation with temporal and spatial resolutions similar to those of CLASP2. We find strong asymmetries in the circular polarization synthetic profiles which considerably complicate the application of the weak field approximation. We demonstrate that the selective application of the weak field approximation to fit different spectral regions in the profile allows to retrieve information about the longitudinal component of the magnetic field at different regions of the model atmosphere, even when the circular polarization profiles are not anti-symmetric and are formed in the presence of strong velocity and magnetic field gradients.

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