论文标题

AGB流出内尘埃化学的化学建模-II。粉尘尺寸分布的影响

Chemical modelling of dust-gas chemistry within AGB outflows -- II. Effect of the dust-grain size distribution

论文作者

Van de Sande, M., Walsh, C., Danilovich, T.

论文摘要

AGB恒星与超新星一起,是星际介质(ISM)的恒星粉尘的主要贡献者。 AGB恒星形成的灰尘颗粒被认为很大。但是,由于仍然尚不清楚尘埃成核和流出内的生长,因此粉尘谷物尺寸分布(GSD)尚不清楚。对于我们对星际尘埃的化学和物理历史的了解,这是一个重要的不确定性,因为AGB粉尘形成$ \ sim $ 70%的发展点的70%。我们扩展了化学动力学模型,该模型独特地包括全面的尘埃化学。现在允许GSD偏离通常假定的Canonical Mathis等人。 (1977)分布。我们发现特定的GSD可以显着影响流出内的尘埃化学。我们的结果表明,气相物种的耗竭水平取决于GSD的平均晶粒表面积。使用一系列过渡时,可以从分子发射线的观察结果中检索出气相丰度及其可能的耗竭。由于GSD处方内的变性,不能检索特定参数,而只能(下限)平均晶粒表面积。但是,这可以区分由大或小晶粒组成的灰尘。我们表明,当与其他可观察到的光谱能量分布和偏振光结合使用时,分子气相丰度曲线的耗竭水平可以限制AGB流出传递给ISM的粉尘的难以捉摸的GSD。

AGB stars are, together with supernovae, the main contributors of stellar dust to the interstellar medium (ISM). Dust grains formed by AGB stars are thought to be large. However, as dust nucleation and growth within their outflows are still not understood, the dust-grain size distribution (GSD) is unknown. This is an important uncertainty regarding our knowledge of the chemical and physical history of interstellar dust, as AGB dust forms $\sim$ 70% of the starting point of its evolution. We expand on our chemical kinetics model, which uniquely includes a comprehensive dust-gas chemistry. The GSD is now allowed to deviate from the commonly assumed canonical Mathis et al. (1977) distribution. We find that the specific GSD can significantly influence the dust-gas chemistry within the outflow. Our results show that the level of depletion of gas-phase species depends on the average grain surface area of the GSD. Gas-phase abundance profiles and their possible depletions can be retrieved from observations of molecular emission lines when using a range of transitions. Due to degeneracies within the prescription of GSD, specific parameters cannot be retrieved, only (a lower limit to) the average grain surface area. Nonetheless, this can discriminate between dust composed of predominantly large or small grains. We show that when combined with other observables such as the spectral energy distribution and polarised light, depletion levels from molecular gas-phase abundance profiles can constrain the elusive GSD of the dust delivered to the ISM by AGB outflows.

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