论文标题

探测多环芳烃的尺寸和电荷

Probing the size and charge of Polycyclic Aromatic Hydrocarbons

论文作者

Maragkoudakis, A., Peeters, E., Ricca, A.

论文摘要

我们提出了一种新方法,以准确描述天体物理源中多环芳烃(PAHS)的电离分数和尺寸分布。为此,我们计算了308个大小,对称性和紧凑性的308个PAH分子的中红外发射光谱,这些分子在一系列辐射场中产生。 We show that the intensity ratio of the solo CH out-of-plane bending mode in PAH cations and anions (referred to as the 11.0 $μ$m band, falling in the 11.0-11.3 $μ$m region for cations and anions) to their 3.3 $μ$m emission, scales with PAH size, similarly to the scaling of the 11.2/3.3 ratio with the number of carbon atoms (n $ _ {\ mathrm {c}} $)用于中性分子。在不同的PAH排放频带中,它是3.3 $ $ m的频段强度,它与N $ _ {\ Mathrm {c}} $具有最强的相关性,并驱动与N $ _ {\ Mathrm {C}} $的N $ _ {\ MATHRM {C}} $中性和离子pah的PAH强度比相关。以前用于跟踪PAH大小的6.2/7.7强度比在我们的大型样本中没有明显的缩放,而没有N $ _ {\ Mathrm {c}} $。我们使用(11.2+11.0)/7.7和(11.2+11.0)/3.3 PAH强度比定义了一个新的诊断网格空间来探测PAH电荷和大小。我们证明了(11.2+11.0)/7.7 - (11.2+11.0)/3.3星系中的星系M82和NGC 253的诊断网格,行星NEBULA NGC 7027,以及对NEBULAE NEBULAE NEBULAE NGC 2023和NGC 7023的相关性,我们的量相关的量很高。 PAHS及其暴露于辐射场。

We present a new method to accurately describe the ionization fraction and the size distribution of polycyclic aromatic hydrocarbons (PAHs) within astrophysical sources. To this purpose, we have computed the mid-infrared emission spectra of 308 PAH molecules of varying sizes, symmetries, and compactness, generated in a range of radiation fields. We show that the intensity ratio of the solo CH out-of-plane bending mode in PAH cations and anions (referred to as the 11.0 $μ$m band, falling in the 11.0-11.3 $μ$m region for cations and anions) to their 3.3 $μ$m emission, scales with PAH size, similarly to the scaling of the 11.2/3.3 ratio with the number of carbon atoms (N$_{\mathrm{C}}$) for neutral molecules. Among the different PAH emission bands, it is the 3.3 $μ$m band intensity which has the strongest correlation with N$_{\mathrm{C}}$, and drives the reported PAH intensity ratio correlations with N$_{\mathrm{C}}$ for both neutral and ionized PAHs. The 6.2/7.7 intensity ratio, previously adopted to track PAH size, shows no evident scaling with N$_{\mathrm{C}}$ in our large sample. We define a new diagnostic grid space to probe PAH charge and size, using the (11.2+11.0)/7.7 and (11.2+11.0)/3.3 PAH intensity ratios respectively. We demonstrate the application of the (11.2+11.0)/7.7 - (11.2+11.0)/3.3 diagnostic grid for galaxies M82 and NGC 253, for the planetary nebula NGC 7027, and the reflection nebulae NGC 2023 and NGC 7023. Finally, we provide quantitative relations for PAH size determination depending on the ionization fraction of the PAHs and the radiation field they are exposed to.

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