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Boron depletion in 9 to 15 M_o stars with rotation

机译:硼耗尽在9至15 m_o旋转星星中

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The treatment of mixing is still one of the major uncertainties in stellar evolution models. One open question is how well the prescriptions for rotational mixing describe the real effects. We tested the mixing prescriptions included in the Geneva stellar evolution code (GENEC) by following the evolution of surface abundances of light isotopes in massive stars, such as boron and nitrogen. We followed 9, 12 and 15 Mc models with rotation from the zero age main sequence up to the end of He burning. The calculations show the expected behaviour with faster depletion of boron for faster rotating stars and more massive stars. The mixing at the surface is more efficient than predicted by prescriptions used in other codes and reproduces the majority of observations very well. However two observed stars with strong boron depletion but no nitrogen enrichment still can not be explained and let the question open whether additional mixing processes are acting in these massive stars.
机译:混合的处理仍然是恒星演化模型中的主要不确定性之一。一个开放问题是旋转混合的处方如何描述真实效果。我们通过遵循大规模恒星(例如硼和氮)的光同位素的表面丰富的演变,测试了日内瓦恒星演化码(Genec)中包括的混合处方。我们跟踪了9,12和15个MC模型,从零年龄的主序列旋转到他燃烧的尽头。该计算显示了硼耗尽的预期行为,用于更快的旋转恒星和更巨大的恒星。表面的混合比其他代码中使用的处方预测的更有效,并且非常好地再现大多数观察结果。然而,两个观察到具有强硼耗尽的恒星,但仍然无法解释氮气浓缩,并让问题打开额外的混合过程在这些大型恒星中作用。

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