论文标题
在非平衡条件下,局部磁性生长和双极扩散的色圈加热
Chromospheric Heating from Local Magnetic Growth and Ambipolar Diffusion Under Non-Equilibrium Conditions
论文作者
论文摘要
互联网工作区域中染色体的加热仍然是太阳能物理学中最重要的开放问题之一。在本研究中,我们通过使用辐射MHD数值模型和IRIS观察进行的非常高的空间分辨率模拟来解决这个旧问题。我们已经扩展了太阳大气的先前现有的3D辐射MHD数值模型,其中包括通过将歧义性扩散和时间依赖性的非平衡氢电离添加到模型中,其中包括在染色体中自以为是的局部驱动的磁扩增。磁场的能量在上染色体上消散,由于双极扩散和非平衡电离电离(NEQI),温度升高。同时,我们发现在模拟中添加双极扩散和NEQI对下色球及其动力学中磁场的局部生长有很小的影响。我们从这些高空间分辨率模型中的合成MG II曲线(具有和不具有双极扩散和NEQI)的合成MG II曲线以及来自IRIS的安静的太阳和冠状孔观测到的比较现在显示出更好的对应关系。当包括双相扩散和NEQI效应时,轮廓强度增加,线芯稍宽。因此,MG II剖面比以前的模型更接近观察到的曲线,但是仍然存在一些差异。
The heating of the chromosphere in internetwork regions remains one of the foremost open questions in solar physics. In the present study we tackle this old problem by using a very high spatial-resolution simulation of quiet-Sun conditions performed with radiative MHD numerical models and IRIS observations. We have expanded a previously existing 3D radiative MHD numerical model of the solar atmosphere, which included self-consistently locally driven magnetic amplification in the chromosphere, by adding ambipolar diffusion and time-dependent non-equilibrium hydrogen ionization to the model. The energy of the magnetic field is dissipated in the upper chromosphere, providing a large temperature increase due to ambipolar diffusion and the non-equilibrium ionization (NEQI). At the same time, we find that adding the ambipolar diffusion and NEQI in the simulation has a minor impact on the local growth of the magnetic field in the lower chromosphere and its dynamics. Our comparison between synthesized Mg II profiles from these high spatial resolution models, with and without ambipolar diffusion and NEQI, and quiet Sun and coronal hole observations from IRIS now reveal a better correspondence. The intensity of profiles is increased and the line cores are slightly broader when ambipolar diffusion and NEQI effects are included. Therefore, the Mg II profiles are closer to those observed than in previous models, but some differences still remain.