Allamandola L J, Hudgins D M, Sandford S A
NASA Ames Research Center, Moffett Field, CA 94035, USA.
Astrophys J. 1999 Feb 1;511(2 Pt 2):L115-9. doi: 10.1086/311843.
The infrared emission band spectrum associated with many different interstellar objects can be modeled successfully by using combined laboratory spectra of neutral and positively charged polycyclic aromatic hydrocarbons (PAHs). These model spectra, shown here for the first time, alleviate the principal spectroscopic criticisms previously leveled at the PAH hypothesis and demonstrate that mixtures of free molecular PAHs can indeed account for the overall appearance of the widespread interstellar infrared emission spectrum. Furthermore, these models give us insight into the structures, stabilities, abundances, and ionization balance of the interstellar PAH population. These, in turn, reflect conditions in the emission zones and shed light on the microscopic processes involved in the carbon nucleation, growth, and evolution in circumstellar shells and the interstellar medium.
通过使用中性和带正电的多环芳烃(PAHs)的组合实验室光谱,可以成功地模拟与许多不同星际天体相关的红外发射带光谱。这些首次在此展示的模型光谱,缓解了先前针对PAH假说提出的主要光谱学批评,并表明游离分子PAHs的混合物确实可以解释广泛存在的星际红外发射光谱的整体外观。此外,这些模型让我们深入了解星际PAH群体的结构、稳定性、丰度和电离平衡。反过来,这些又反映了发射区的条件,并揭示了恒星周围壳层和星际介质中碳成核、生长和演化所涉及的微观过程。