论文标题
Fe I 6173的非LTE形成太阳大气中的一条线
The non-LTE formation of the Fe I 6173 A line in the solar atmosphere
论文作者
论文摘要
当前的分析专门针对非本地热力学平衡(NLTE)效应的详细研究影响了Fe I 6173 A线的形成,该线路被许多仪器广泛使用,包括热溶和磁性成像器(HMI)(HMI)的许多仪器(HMI)在板上板上的Solar Dynamerics(SDO)和极性图像工具和启用图像均可使用。我们在LTE和NLTE条件下的太阳能球员的三维磁流体动力学模拟的快照中合成了Stokes曲线。模拟立方体包含一个黑子和周围的块状区域。比较和分析了在不同特征中形成的LTE和NLTE Stokes曲线。 NLTE效应在强度和极化曲线上都是明显的。对于6173 A线,紫外线占主导地位是主要的NLTE机制,并且散射效应的重要性要小得多。除了Fe外,还需要对Si,Mg和Al进行NLTE处理以设置紫外线中的正确光子密度。与仅在NLTE中处理Fe的情况相比,这可以进一步增强LTE的出发。即使在曲线平均进行平均或在粗波长的网格上进行采样(例如SDO/HMI和其他磁力仪),这些效果也可以生存。与6301 A -6302 A线相比,在Fe I 6173 A中,与LTE剖面的偏差更强,因为在后者的情况下,线散射可以补偿紫外线的效果。基于与LTE的出发性质,处理6173 LTE中的一条线可能会导致温度过高估计和磁场强度低估。
The current analysis is dedicated to a detailed investigation of the non-Local Thermodynamic Equilibrium (NLTE) effects influencing the formation of the Fe I 6173 A line, which is widely used by many instruments including the Helioseismic and Magnetic Imager (HMI) on-board the Solar Dynamics Observatory (SDO) and the Polarimetric and Helioseismic Imager on board the Solar Orbiter. We synthesize the Stokes profiles in a snapshot of a three dimensional magnetohydrodynamic simulation of the solar photosphere under both LTE and NLTE conditions. The simulation cube contains a sunspot and a plage region around it. The LTE and NLTE Stokes profiles formed in different features are compared and analysed. NLTE effects are evident in both intensity and polarization profiles. For the 6173 A line, UV overionization is the dominant NLTE mechanism, and scattering effects are much less important. In addition to Fe, an NLTE treatment of Si, Mg and Al is necessary to set the right photon density in the UV. This is found to further enhance the LTE departures compared to the case where Fe alone is treated in NLTE. These effects in the Stokes profiles survive even when the profiles are averaged spatially or sampled on a coarse wavelength grid such as that used by the SDO/HMI and other magnetographs. The deviations from the LTE profiles are stronger in the Fe I 6173 A compared to the 6301 A - 6302 A lines because in case of the latter, line scattering compensates the effect of UV overionization. Based on the nature of departures from LTE, treating the 6173 A line in LTE will likely result in an over-estimation of temperature and an under-estimation of the magnetic field strength.