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VUV photo-processing of PAH cations: quantitative study on the ionization versus fragmentation processes

机译:PAH阳离子的VUV光处理:电离与碎片化过程的定量研究

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摘要

Interstellar polycyclic aromatic hydrocarbons (PAHs) are strongly affected by the absorption of vacuum ultraviolet (VUV) photons in the interstellar medium (ISM), yet the branching ratio between ionization and fragmentation is poorly studied. This is crucial for the stability and charge state of PAHs in the ISM in different environments, affecting in turn the chemistry, the energy balance, and the contribution of PAHs to the extinction and emission curves. We studied the interaction of PAH cations with VUV photons in the 7 – 20 eV range from the synchrotron SOLEIL beamline, DESIRS. We recorded by action spectroscopy the relative intensities of photo-fragmentation and photo-ionization for a set of eight PAH cations ranging in size from 14 to 24 carbon atoms, with different structures. At photon energies below ~13.6 eV fragmentation dominates for the smaller species, while for larger species ionization is immediately competitive after the second ionization potential (IP). At higher photon energies, all species behave similarly, the ionization yield gradually increases, leveling off between 0.8 and 0.9 at ~18 eV. Among isomers, PAH structure appears to mainly affect the fragmentation cross section, but not the ionization cross section. We also measured the second IP for all species and the third IP for two of them, all are in good agreement with theoretical ones confirming that PAH cations can be further ionized in the diffuse ISM. Determining actual PAH dication abundances in the ISM will require detailed modeling. Our measured photo-ionization yields for several PAH cations provide a necessary ingredient for such models.
机译:星际多环芳烃(PAHs)受星际介质(ISM)中真空紫外线(VUV)光子的吸收的强烈影响,但对电离和碎片化之间的支化比的研究却很少。这对于不同环境中ISM中PAHs的稳定性和电荷状态至关重要,进而影响其化学性质,能量平衡以及PAH对消光和发射曲线的贡献。我们从同步加速器SOLEIL光束线DESIRS研究了7-20 eV范围内PAH阳离子与VUV光子的相互作用。我们通过动作光谱法记录了8种PAH阳离子的相对光强度,这些相对强度是从8个碳原子到14个碳原子到24个碳原子,结构不同。在小于约13.6 eV的光子能量下,较小的物种占主导地位,而较大的物种则在第二个电离势(IP)之后立即电离竞争。在较高的光子能量下,所有物质的行为都相似,电离产率逐渐提高,在〜18 eV时稳定在0.8至0.9之间。在异构体中,PAH结构似乎主要影响断裂截面,但不影响电离截面。我们还测量了所有物种的第二IP和其中两个物种的第三IP,它们均与理论值非常吻合,从而证实了PAH阳离子可以在弥散ISM中进一步电离。要确定ISM中实际的PAH指示量,需要进行详细的建模。我们对几种PAH阳离子测得的光电离产率为此类模型提供了必要的成分。

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