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Role of atomic diffusion in the opacity enhancement inside B-type stars

机译:原子扩散在B型恒星内部不透明度增强中的作用

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Context. The pulsation frequencies of early B-type stars cannot be reproduced using stellar models with homogeneous abundances. A suitable match requires a dedicated enhancement of the opacity in the layers where its main contributors are the iron-peak elements (the so-called Z -bump), which trigger the oscillations in these stars. Aim. Our aim is to test whether the abundance stratification induced by atomic diffusion in these stellar layers is able to modify the local opacity as needed to account for the asteroseismic observations. Methods. Models representing a typical pulsating B-star were evolved during the main sequence using the Toulouse–Geneva evolution code in an improved version. The migration of the chemicals involves radiative accelerations, which were computed with the single-valued parameter method, and fingering mixing with parameters constrained by three-dimensional simulations. The possible effect of mass-loss was also considered. Results. We show that atomic diffusion modifies the abundance profiles inside the star, leading to an overabundance of the iron-peak elements in the upper part of the envelope. The opacities may become as high as required, provided that fingering mixing, which extends the size of the overabundance zone, is taken into account. A zero-flux of the elements at the surface leading to unphysical accumulations, mass-loss is also required to evolve the model until the end of the main sequence.
机译:上下文。早期B型恒星的脉动频率无法使用均质丰度的恒星模型重现。适当的匹配需要专门提高其主要贡献者是铁峰元素(所谓的Z凸点)的层的不透明度,这些元素会触发这些恒星的振荡。目标。我们的目的是测试由原子在这些恒星层中扩散所引起的丰度分层是否能够根据需要考虑星震观测来修改局部不透明度。方法。代表典型脉动B星的模型是在主要序列中使用图卢兹–日内瓦进化代码改进版进行进化的。化学物质的迁移涉及辐射加速度,该辐射加速度是通过单值参数方法计算的,并且指状混合具有受三维模拟约束的参数。还考虑了质量损失的可能影响。结果。我们表明,原子扩散会改变恒星内部的丰度分布,从而导致包壳上部铁峰元素的丰度。如果考虑到指状混合(它会扩展过量区域的大小),则不透明度可能会变得很高。表面上元素的零通量会导致非物理性的积累,也需要质量损失才能演化模型,直到主序列结束。

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