论文标题

一个新的框架,用于研究结合能分布对粉尘晶粒化学的影响

A novel framework to study the impact of binding energy distributions on the chemistry of dust grains

论文作者

Grassi, T., Bovino, S., Caselli, P., Bovolenta, G., Vogt-Geisse, S., Ercolano, B.

论文摘要

从粉尘晶粒中分子的蒸发对于理解恒星和行星形成过程的某些关键方面至关重要。在热身阶段,年轻的原始物体的存在会诱导分子从尘埃表面蒸发到气相,从而增强其化学复杂性。同样,在偶然磁盘中,所谓的雪线的位置是由蒸发决定的,对行星的形成产生了重要的后果。解吸的分子量取决于物种与晶粒表面之间的相互作用,该物种与结合能控制。最近的理论和实验工作表明该参数的值分布,而不是天文学模型中经常使用的单个值。我们在这里存在一个新的“多结合能量”框架,以评估结合能的分布对与晶粒结合的物种量的分布对物种的量。我们发现,表面化学的效率受到此过程的显着影响,对解吸物种的理论估计产生了重要的后果。

The evaporation of molecules from dust grains is crucial to understand some key aspects of the star- and the planet-formation processes. During the warm-up phase the presence of young protostellar objects induces molecules to evaporate from the dust surface into the gas phase, enhancing its chemical complexity. Similarly, in circumstellar disks, the position of the so-called snow-lines is determined by evaporation, with important consequences for the formation of planets. The amount of molecules that are desorbed depends on the interaction between the species and the grain surface, which is controlled by the binding energy. Recent theoretical and experimental works point towards a distribution of values for this parameter instead of the single value often employed in astrochemical models.We present here a new "multi-binding energy" framework, to assess the effects that a distribution of binding energies has on the amount of species bound to the grains. We find that the efficiency of the surface chemistry is significantly influenced by this process with crucial consequences on the theoretical estimates of the desorbed species.

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