论文标题

对流边界混合对TP-AGB的影响

Impact of Convective Boundary Mixing on the TP-AGB

论文作者

Wagstaff, Graham, Bertolami, Marcelo M. Miller, Weiß, Achim

论文摘要

对流边界的处理仍然是恒星进化中不确定性的重要来源,对渐近巨型分支(AGB)的热脉冲恒星的影响很大。各种来源被视为在此阶段中掺入对流边界混合的动机,从S过程中的核合成到流体动力学模型。尽管有大量证据支持对对流边界在AGB进化上的混合,但这种混合并未普遍包含在TP-AGB恒星模型中。这项研究的目的是确定对流边界混合的程度,在考虑全面进化模型时,这与观测值兼容。此外,我们研究了一种理论论点,该论点已被提出,在脉冲驱动的对流区域的基础上,运动驱动的过度旋转应该可以忽略不计。我们表明,尽管该论点的存在,但基于湍流夹带的情况的估计表明,在两个对流边界都可以混合。我们证明,在热脉冲渐近巨型分支之前,在核心燃烧阶段的对流边界上进行的其他混合对后来的演变有影响,改变了第三次挖掘和热底燃烧发生的质量范围,从而改变了最终的表面组成。此外,已经努力使用观察性约束来限制在不同的对流边界处的对流边界混合的效率。我们的研究表明,不同的约束之间存在很大的张力,这使得在呈指数衰减的过度冲突的框架内不可能同时再现所有可观察到的东西。该结果要求重新评估对流边界混合模型和观察性约束。

The treatment of convective boundaries remains an important source of uncertainty within stellar evolution, with drastic implications for the thermally-pulsing stars on the Asymptotic Giant Branch (AGB). Various sources are taken as motivation for the incorporation of convective boundary mixing during this phase, from s-process nucleosynthesis to hydrodynamical models. In spite of the considerable evidence in favour of the existence of convective boundary mixing on the pre-AGB evolution, this mixing is not universally included in models of TP-AGB stars. The aim of this investigation is to ascertain the extent of convective boundary mixing, which is compatible with observations when considering full evolutionary models. Additionally, we investigate a theoretical argument that has been made that momentum-driven overshooting at the base of the pulse-driven convection zone should be negligible. We show that, while the argument holds,estimations based on the picture of turbulent entrainment suggest that mixing is possible at both convective boundaries. We demonstrate that additional mixing at convective boundaries during core-burning phases prior to the thermally-pulsing Asymptotic Giant Branch has an impact on the later evolution, changing the mass range at which the third dredge-up and hot-bottom burning occur, and thus also the final surface composition. In addition, an effort has been made to constrain the efficiency of convective boundary mixing at the different convective boundaries, using observational constraints. Our study suggests a strong tension between different constraints that makes it impossible to reproduce all observables simultaneously within the framework of an exponentially decaying overshooting. This result calls for a reassessment of both the models of convective boundary mixing and the observational constraints.

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