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RH 1.5D: a massively parallel code for multi-level radiative transfer with partial frequency redistribution and Zeeman polarisation

机译:RH 1.5D:大规模并行编码的大规模并行代码,具有部分频率重新分配和塞曼极化

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摘要

The emergence of three-dimensional magneto-hydrodynamic simulations of stellar atmospheres has sparked a need for efficient radiative transfer codes to calculate detailed synthetic spectra. We present RH 1.5D, a massively parallel code based on the RH code and capable of performing Zeeman polarised multi-level non-local thermodynamical equilibrium calculations with partial frequency redistribution for an arbitrary amount of chemical species. The code calculates spectra from 3D, 2D or 1D atmospheric models on a column-by-column basis (or 1.5D). While the 1.5D approximation breaks down in the cores of very strong lines in an inhomogeneous environment, it is nevertheless suitable for a large range of scenarios and allows for faster convergence with finer control over the iteration of each simulation column. The code scales well to at least tens of thousands of CPU cores, and is publicly available. In the present work we briefly describe its inner workings, strategies for convergence optimisation, its parallelism, and some possible applications.
机译:恒星大气的三维磁流体动力学模拟的出现引发了对有效的辐射传递代码来计算详细合成光谱的需求。我们介绍了RH 1.5D,这是一个基于RH代码的大规模并行代码,能够执行Zeeman极化多级非局部热力学平衡计算,并且对任意数量的化学物种进行部分频率重新分配。该代码以逐列(或1.5D)为基础,从3D,2D或1D大气模型计算光谱。尽管1.5D近似值在不均匀的环境中在非常强的线条的核心中破裂,但它仍然适用于各种场景,并且可以通过对每个模拟列的迭代进行更好的控制来实现更快的收敛。该代码可以很好地扩展到至少数万个CPU内核,并且可以公开获得。在当前工作中,我们简要描述其内部工作原理,收敛优化策略,并行性以及一些可能的应用。

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