论文标题

宇宙射线对致密核心化学的影响

The Effects of Cosmic Rays on the Chemistry of Dense Cores

论文作者

O'Donoghue, Ross, Viti, Serena, Padovani, Marco, James, Tomas

论文摘要

宇宙射线对于分子云的化学及其进化至关重要。它们为寒冷,致密的核心提供必要的电离,解离,加热和能量。当宇宙射线穿过云层时,它们被衰减并失去能量,从而依赖于系统的色谱柱密度。这些颗粒对中央区域的详细影响仍需要完全了解。在这里,我们通过包括电离速率和H2解离速率依赖性以及宇宙射线诱导的激发物种的产生,并详细研究这些治疗方法对固有核心化学的影响,从而在UCLCHEM化学建模代码中如何处理宇宙射线。我们发现,这些治疗方法对化学丰度会产生重大影响,最多几个数量级,具体取决于身体状况。电离依赖性是最重要的治疗方法,它通过增加的离子化物质,谷物解答和增强的化学反应来影响化学丰度。与观测结果得出的化学丰度的比较表明,与标准处理相比,新的治疗方法可以更好地再现这些观察结果。显然,宇宙射线的更先进的处理对于化学模型至关重要,包括这种类型的依赖性提供了更准确的化学表示。

Cosmic rays are crucial for the chemistry of molecular clouds and their evolution. They provide essential ionizations, dissociations, heating and energy to the cold, dense cores. As cosmic rays pierce through the clouds they are attenuated and lose energy, which leads to a dependency on the column density of a system. The detailed effects these particles have on the central regions still needs to be fully understood. Here, we revisit how cosmic rays are treated in the UCLCHEM chemical modeling code by including both ionization rate and H2 dissociation rate dependencies alongside the production of cosmic ray induced excited species and we study in detail the effects of these treatments on the chemistry of pre-stellar cores. We find that these treatments can have significant effects on chemical abundances, up to several orders of magnitude, depending on physical conditions. The ionization dependency is the most significant treatment, influencing chemical abundances through increased presence of ionized species, grain desorptions and enhanced chemical reactions. Comparisons to chemical abundances derived from observations show the new treatments reproduce these observations better than the standard handling. It is clear that more advanced treatments of cosmic rays are essential to chemical models and that including this type of dependency provides more accurate chemical representations.

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