论文标题
关于检测氦气D $ _3 $ line偏振的可能性
On the Possibilities of Detecting Helium D$_3$ Line Polarization with Metis
论文作者
论文摘要
太阳能轨道板上的太空冠状元素为我们提供了研究爆发突出和冠状质量弹出(CME)的新功能。它的两个频谱通道,氢$α$和可见光(VL)将首次提供共对准和同时的图像,以研究CMES的动力学和等离子体特性。此外,使用VL通道(580-640 nm),我们发现了一种令人兴奋的可能性,可以检测氦气D $ _3 $线(587.73 nm)及其线性极化。这项研究的目的是预测该线关于CME热和磁性结构的诊断潜力。对于模型网格,我们首先计算D $ _3 $线的强度以及VL连续性强度,这是由于核心电子上的Thomson散射引起的。我们表明,METIS VL通道将检测到两者的混合物,并且在30-50,000 K之间的中等温度下氦发射的优势。这是D $ _3 $散射极化和连续极化的混合物。在存在磁场的情况下降低了前者,并且旋转极化轴(Hanle效应)。 METIS具有测量$ Q/I $和$ U/I $极化度的能力,我们显示了它们对温度和磁场的依赖。在$ t $ = 30,000 K时,我们发现$ Q/i $的显着降低是由于强烈增强的d $ _3 $线排放,而10 g的去极化大约为10 \%。
Space coronagraph Metis on board of the Solar Orbiter offers us new capabilities for studying eruptive prominences and coronal mass ejections (CME). Its two spectral channels, hydrogen L$α$ and visible-light (VL) will provide, for the first time, co-aligned and co-temporal images to study dynamics and plasma properties of CMEs. Moreover, with the VL channel (580 - 640 nm) we find an exciting possibility to detect the helium D$_3$ line (587.73 nm) and its linear polarization. The aim of this study is to predict the diagnostics potential of this line regarding the CME thermal and magnetic structure. For a grid of models we first compute the intensity of the D$_3$ line together with VL continuum intensity due to Thomson scattering on core electrons. We show that the Metis VL channel will detect a mixture of both, with predominance of the helium emission at intermediate temperatures between 30 - 50,000 K. Then we use the code HAZEL to compute the degree of linear polarization detectable in the VL channel. This is a mixture of D$_3$ scattering polarization and continuum polarization. The former one is lowered in the presence of a magnetic field and the polarization axis is rotated (Hanle effect). Metis has the capability of measuring $Q/I$ and $U/I$ polarization degrees and we show their dependence on temperature and magnetic field. At $T$=30,000 K we find a significant lowering of $Q/I$ which is due to strongly enhanced D$_3$ line emission, while depolarization at 10 G amounts roughly to 10 \%.