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Model atmospheres of chemically peculiar stars - Self-consistent empirical stratified model of HD?24712

机译:化学特有恒星的大气模型-HD?24712的自洽经验分层模型

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Context. High-resolution spectra of some chemically peculiar stars clearly demonstrate the presence of strong abundance gradients in their atmospheres. However, these inhomogeneities are usually ignored in the standard scheme of model atmosphere calculations, breaking the consistency between model structure and spectroscopically derived abundance pattern. Aims. In this paper we present the first empirical self-consistent stellar atmosphere model of the roAp star HD24712 with stratification of chemical elements included, and which is derived directly from the observed profiles of spectral lines without time-consuming simulations of physical mechanisms responsible for these anomalies. Methods. We used the LLmodels stellar model atmosphere code and DDAFIT minimization tool for analysis of chemical element stratification and construction of a self-consistent atmospheric model. Empirical determination of Pr and Nd stratification in the atmosphere of HD24712 is based on NLTE line formation for Pr II/III and Nd II/III with the use of the DETAIL code. Results. Based on an iterative procedure of stratification analysis and subsequent re-calculation of model atmosphere structure, we constructed a self-consistent model of HD24712, i.e. the model whose temperature-pressure structure is consistent with the results of the stratification analysis. It is shown that stratification of chemical elements leads to considerable changes in model structure compared to the non-stratified homogeneous case. We find that accumulation of rare earth elements (REE) allows for the inverse temperature gradient to be present in the upper atmosphere of the star with a maximum temperature increase of about 600K. Key words: stars: chemically peculiar - stars: atmospheres - stars: individual: HD24712
机译:上下文。一些化学特有恒星的高分辨率光谱清楚地表明了它们大气中存在强丰度梯度。但是,在模型大气计算的标准方案中,通常会忽略这些不均匀性,从而破坏了模型结构与光谱得出的丰度模式之间的一致性。目的在本文中,我们介绍了roAp星HD24712的第一个经验自洽恒星大气模型,其中包括了化学元素的分层,它直接从观察到的谱线剖面中得出,而无需耗时地模拟造成这些异常的物理机制。方法。我们使用LLmodels恒星模型大气代码和DDAFIT最小化工具来分析化学元素分层和构建自洽大气模型。对HD24712大气中Pr和Nd分层的经验确定是基于使用DETAIL代码的Pr II / III和Nd II / III的NLTE线形成。结果。根据分层分析的迭代过程以及随后对模型大气结构的重新计算,我们构建了HD24712的自洽模型,即温度-压力结构与分层分析结果一致的模型。结果表明,与非分层的均质情况相比,化学元素的分层导致模型结构的显着变化。我们发现,稀土元素(REE)的积累允许逆温度梯度出现在恒星的高层大气中,最大温度升高约600K。关键词:恒星:化学特有的-恒星:大气-恒星:个人:HD24712

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