paper

Abundances of PAHs in the ISM: Confronting Observations with Experimental Results

arXiv:1102.3775 · doi:10.1051/0004-6361/201116602

Abstract

We present recent UV laboratory spectra of various polycyclic aromatic hydrocarbons (PAHs) and explore the potential of these molecules as carriers of the DIBs. From a detailed comparison of gas-phase and Ne-matrix absorption spectra of anthracene, phenanthrene, pyrene, 2,3-benzofluorene, benzo[ghi]perylene, and hexabenzocoronene with new interstellar spectra, we infer upper limits in the abundance of these PAHs in the interstellar medium. Upper limits in the column densities of anthracene of \ cm and of pyrene and 2,3-benzofluorene ranging from \ cm are inferred. Upper limits in the column densities of benzo[ghi]perylene are and cm for phenanthrene. The measurements indicate fractional abundances of anthracene, pyrene, and 2,3-benzofluorene of a few times . Upper limits in the fractional abundance of benzo[ghi]perylene of a few times and of phenanthrene of few times are inferred. {Toward CPD , we found near 3584 Å an absorption line of OH, which was discovered in the interstellar medium only very recently. The fractional abundances of PAHs inferred here are up to two orders of magnitude lower than estimated total PAH abundances in the interstellar medium. This indicates that either neutral PAHs are not abundant in translucent molecular clouds, or that a PAH population with a large variety of molecules is present.

18 pages, 14 figures, paper accepted by A&A

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