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Solving non-LTE problems in rotational transitions using the Gauss–Seidel method and its implementation in the Atmospheric Radiative Transfer Simulator

机译:使用高斯-赛德尔方法解决旋转过渡中的非LTE问题及其在大气辐射传输模拟器中的实现

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This article presents our implementation of a non-LTE solver in spherical symmetry for molecular rotational transition in static or expanding atmospheres. The new open-source code relies on the Gauss–Seidel Accelerated Lambda Iteration methodology that provides a rapid and accurate convergence of the non-LTE problems, which is now routinely used in astrophysical and planetary research. The non-LTE code is interfaced with the widely used package, the Atmospheric Radiative Transfer Simulator (ARTS), to facilitate spectral line simulations for various viewing geometries. In this paper we describe the numerical implementation, provide the first validation results for the populations against two other non-LTE codes, and then discuss the possible application. The quantitative comparisons are performed using an established ortho-water non-LTE model applied to cases of optical thick and thin conditions of Ganymede’s atmosphere. The differences in populations expressed as excitation temperatures show very good agreement in both cases. Finally, we also apply this model to a sample of data from the Microwave Instrument for the Rosetta Orbiter (MIRO) instrument. The new non-LTE package is demonstrated to be fast and accurate, and we hope that it will be a useful addition to the planetary community. In addition, being open source and part of the ARTS, it will be further improved and developed.
机译:本文介绍了我们在球对称的非LTE解算器中的实现,以实现在静态或扩展大气中的分子旋转过渡。新的开源代码依赖于高斯-赛德尔加速Lambda迭代方法,该方法可快速准确地融合非LTE问题,目前已被常规用于天体物理学和行星研究。非LTE代码与广泛使用的套件“大气辐射传输模拟器(ARTS)”接口,以促进针对各种观察几何形状的光谱线模拟。在本文中,我们描述了数值实现,针对其他两个非LTE代码为人群提供了第一个验证结果,然后讨论了可能的应用。定量比较是使用已建立的正交水非LTE模型进行的,该模型适用于木卫三大气层光学厚度和稀薄条件的情况。在两种情况下,以激发温度表示的总体差异显示出很好的一致性。最后,我们还将这个模型应用于来自Rosetta Orbiter(MIRO)仪器的微波仪器的数据样本。新的非LTE套件已被证明是快速,准确的,我们希望它将对行星社区有所帮助。另外,作为ARTS的开源和一部分,它将得到进一步改进和发展。

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