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The effects of metallicity, radiation field and dust extinction on the charge state of PAHs in diffuse clouds: implications for the DIB carrier

机译:金属,辐射场和消光粉尘对扩散云中PAHs电荷状态的影响:对DIB载体的影响

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摘要

Context.The unidentified diffuse interstellar bands (DIB) are observed throughout the Galaxy, the Local Group and beyond. Their carriers are possibly related to complex carbonaceous gas-phase molecules, such as (cationic) polycyclic aromatic hydrocarbons and fullerenes. Aims.In order to reveal the identity of the DIB carrier we investigate the effects of metallicity, radiation field and extinction curve on the PAH charge state distribution, and thus the theoretical emergent PAH spectrum, in diffuse interstellar clouds. This behaviour can then be linked to that of the DIB carrier, thus giving insight into its identity. Methods.We use radiative transfer and chemical models to compute the physical and chemical conditions in diffuse clouds with Galactic and Magellanic Cloud types of interstellar dust and gas. Subsequently, the PAH charge state distributions throughout these clouds are determined. Results.We find that the fraction of PAH cations is much higher in the Magellanic Cloud environments than in the Milky Way, caused predominantly by the respective lower metallicities, and mitigated by the steeper UV extinction curve. The fraction of anions is much lower in a low metallicity environment. The predicted DIB strength of cationic PAH carriers is similar to that of the Milk Way for the LMC and 40% for the SMC due to the overall metallicity. Stronger DIBs could be expected in the Magellanic Clouds if they emanate from clouds that are exposed to an average interstellar radiation field that is significantly stronger than in the Milky Way, although photo-destruction processes could possibly reduce this effect, especially for the smaller PAHs. Our results show that the presence and absence of DIB carriers in the Magellanic Cloud lines of sight can be tied to the PAH charge balance which is driven by metallicity, UV radiation and dust extinction effects.
机译:背景:在整个银河系,本地群以及其他地方都观察到了身份不明的弥漫星际带(DIB)。它们的载体可能与复杂的碳质气相分子有关,例如(阳离子)多环芳烃和富勒烯。目的:为了揭示DIB载体的身份,我们研究了星际云中金属性,辐射场和消光曲线对PAH电荷状态分布的影响,从而研究了理论上出现的PAH谱。然后可以将此行为与DIB载体的行为相关联,从而深入了解其身份。方法:我们使用辐射转移和化学模型计算星际尘埃和气体星系和麦哲伦星系类型的弥散云中的物理和化学条件。随后,确定遍及这些云的PAH电荷状态分布。结果我们发现,麦哲伦星云环境中PAH阳离子的比例比银河系高得多,主要是由于各自较低的金属性导致的,而陡峭的UV消光曲线可以缓解这种情况。在低金属度的环境中,阴离子的比例要低得多。阳离子PAH载体的预测DIB强度类似于LMC的银河系,而SMC则为40%,这是由于总体金属性。如果麦哲伦星云来自暴露于比银河系强得多的平均星际辐射场的云,则可以预期麦哲伦星云中的DIB会更强,尽管光毁灭过程可能会减轻这种影响,特别是对于较小的PAH。我们的结果表明,麦哲伦星云视线中DIB载体的存在与否可以与PAH电荷平衡相关,PAH电荷平衡是由金属性,UV辐射和粉尘消灭作用驱动的。

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    Cox, N.L.J.; Spaans, M.;

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  • 年度 2006
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  • 正文语种 en
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