Salama F, Galazutdinov G A, Krelowski J, Allamandola L J, Musaev F A
NASA-Ames Research Center, Space Science Division, Moffett Field, CA 94035-1000, USA.
Astrophys J. 1999 Nov 20;526 Pt 1:265-73. doi: 10.1086/307978.
We discuss the proposal relating the origin of some of the diffuse interstellar bands (DIBs) to neutral and ionized polycyclic aromatic hydrocarbons (PAHs) present in interstellar clouds. Laboratory spectra of several PAHs, isolated at low temperature in inert gas matrices, are compared with the spectra of five reddened early-type stars selected from an extensive set of astronomical spectra. From this comparison, it is concluded that PAH ions are good candidates to explain some of the DIBS. Unambiguous assignments are difficult, however, because of the shift in wavelengths and the band broadening induced in the laboratory spectra by the solid matrix. This situation is illustrated by a comparison with the gas-phase spectra made available recently for two PAH ions. Definitive band assignments and, ultimately, the test of the proposal that PAH ions carry some of the DIBs must await the availability of a larger set of gas-phase measurements in the laboratory. The present assessment offers a guideline for future laboratory experiments by allowing the preselection of promising PAH molecules to be studied in jet expansions.
我们讨论了将一些弥散星际带(DIBs)的起源与星际云中存在的中性和离子化多环芳烃(PAHs)联系起来的提议。将在惰性气体基质中低温分离的几种PAHs的实验室光谱与从大量天文光谱中选出的五颗变红早型星的光谱进行了比较。通过这种比较得出结论,PAH离子是解释某些DIBs的良好候选者。然而,由于固体基质在实验室光谱中引起的波长移动和谱带展宽,明确的归属很困难。与最近获得的两种PAH离子的气相光谱进行比较说明了这种情况。明确的谱带归属以及最终对PAH离子携带某些DIBs这一提议的检验,必须等待实验室中获得更多的气相测量结果。目前的评估通过允许预先选择在射流膨胀中研究的有前景的PAH分子,为未来的实验室实验提供了指导方针。