Magnetic and non-magnetic AGB mixing for s-processing

M. Busso
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Abstract

I outline a few features of recent models for the formation of the neutron source 13C(α,n)16O in low mass stars (1 ≲ M/M⊙ ≲ 3, LMS ) ascendingfor the second time the Red Giant Branch, generally called Asymptotic Giant Branch, or AGB stars. I also briefly outline the nucleosynthesis results obtained trough them. The mentioned models consider the physical structure below the frequent downward extensions of the convective envelope into the He-intershell (the so-called third dredge-up or TDU episodes). There, the conditions are such that the occurrence of further mixing is strongly facilitated, due to the minimal temperature gradient. A way to induce proton mixing from the envelope (certainly not the only one) arises whenever the ambient magnetic fields expected for LMS promote the buoyancy of strongly magnetized flux tubes. I review some characteristics of the ensuing mixing episodes, mentioning how different hydrodynamical processes might yield similar effects, thus encouraging stellar physicists to verify in more detail this possibility.
用于s加工的磁性和非磁性AGB混合
我概述了中子源13C(α,n)16O在低质量恒星(1 > M/M⊙> 3,LMS)第二次上升的红巨星分支(通常称为渐近巨星分支,或AGB恒星中形成的最新模型的一些特征。我还简要概述了通过它们获得的核合成结果。上述模型考虑了对流包络层频繁向下延伸进入He-intershell(所谓的第三次挖掘或TDU事件)以下的物理结构。在这种情况下,由于温度梯度最小,进一步混合的发生非常容易。每当LMS所期望的环境磁场促进强磁化磁通管的浮力时,就会出现一种从包络层诱导质子混合的方法(当然不是唯一的方法)。我回顾了随后的混合事件的一些特征,提到不同的流体动力过程如何产生相似的效果,从而鼓励恒星物理学家更详细地验证这种可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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