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Partial redistribution in 3D non-LTE radiative transfer in solar-atmosphere models

机译:在太阳能大气模型中3D非LTE辐射转移的部分再分配

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Context. Resonance spectral lines such as H? i Ly? α , Mg? ii h&k, and Ca? ii H&K that form in the solar chromosphere, are influenced by the effects of 3D radiative transfer as well as partial redistribution (PRD). So far no one has modeled these lines including both effects simultaneously owing to the high computing demands of existing algorithms. Such modeling is, however, indispensable for accurate diagnostics of the chromosphere. Aims. We present a computationally tractable method to treat PRD scattering in 3D model atmospheres using a 3D non-local thermodynamic equilibrium (non-LTE) radiative transfer code. Methods. To make the method memory-friendly, we use the hybrid approximation for the redistribution integral. To make the method fast, we use linear interpolation on equidistant frequency grids. We verify our algorithm against computations with the RH code and analyze it for stability, convergence, and usefulness of acceleration using model atoms of Mg? ii with the h&k lines and H? i with the Ly? α line treated in PRD. Results. A typical 3D PRD solution can be obtained in a model atmosphere with 252 × 252 × 496 coordinate points in 50?000–200?000 CPU hours, which is a factor ten slower than computations assuming complete redistribution. We illustrate the importance of the joint action of PRD and 3D effects for the Mg? ii h&k lines for disk-center intensities, as well as the center-to-limb variation. Conclusions. The proposed method allows for the simulation of PRD lines in a time series of radiation-magnetohydrodynamic models, in order to interpret observations of chromospheric lines at high spatial resolution.
机译:语境。谐振光谱线如h?我是谁? α,mg? II H&K和CA? II H&K在太阳能铬层中形成的,受3D辐射转移以及部分再分配(PRD)的影响。到目前为止,由于现有算法的高计算需求,没有人建模这些线路,包括同时的两种影响。然而,这种建模对于铬层的准确诊断是必不可少的。目标。我们使用3D非局部热力学平衡(非LTE)辐射转移代码来介绍一种计算轨道处理3D模型环境中的PRD散射。方法。要使方法友好,我们使用重新分配的混合近似。要快速制作该方法,我们在等距频率网格上使用线性插值。我们验证了我们使用RH代码的计算的算法,并使用MG的模型原子分析加速度的稳定性,收敛性和有用性吗? II与H&K线和H?我有ly? PRD处理的α线。结果。典型的3D PRD解决方案可以在模型气氛中获得252×252×496坐标点,在50?000-200?000 CPU小时,这是假设完全再分布的计算速度。我们说明了锰的联合行动和3D效应的重要性? II H&K线路用于磁盘中心强度,以及中心到肢体变化。结论。所提出的方法允许在一系列辐射 - 磁力流体动力学模型中模拟PRD线,以便在高空间分辨率下解释观察。

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