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Time-dependent radiative transfer with PHOENIX

机译:用PHOENIX进行与时间有关的辐射转移

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Aims. We present first results and tests of a time-dependent extension to the general purpose model atmosphere code PHOENIX. We aim to produce light curves and spectra of hydro models for all types of supernovae. Methods. We extend our model atmosphere code PHOENIX to solve time-dependent non-grey, NLTE, radiative transfer in a special relativistic framework. A simple hydrodynamics solver was implemented to keep track of the energy conservation of the atmosphere during free expansion. Results. The correct operation of the new additions to PHOENIX were verified in test calculations. Conclusions. We have shown the correct operation of our extension to time-dependent radiative transfer and will be able to calculate supernova light curves and spectra in future work. Key words: stars: supernovae: general - radiative transfer - methods: numerical
机译:目的我们介绍了通用模型大气代码PHOENIX随时间扩展的初步结果和测试。我们的目标是为所有类型的超新星生成水力模型的光曲线和光谱。方法。我们扩展了模型大气代码PHOENIX,以在特殊的相对论框架中解决与时间相关的非灰色,NLTE辐射传输。实施了一个简单的流体动力学求解器,以跟踪自由膨胀过程中大气的能量守恒。结果。在测试计算中验证了新添加的PHOENIX的正确操作。结论我们已经展示了扩展到时间相关辐射转移的正确方法,并且能够在未来的工作中计算超新星的光曲线和光谱。关键词:恒星:超新星:一​​般-辐射转移-方法:数值

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