High-resolution IR absorption spectroscopy of polycyclic aromatic hydrocarbons in the 3 μm region: role of periphery
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| Publication date | 01-11-2016 |
| Journal | Astrophysical Journal |
| Article number | 58 |
| Volume | Issue number | 831 | 1 |
| Number of pages | 11 |
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| Abstract |
In this work we report on high-resolution IR absorption studies that
provide a detailed view on how the peripheral structure of irregular
polycyclic aromatic hydrocarbons (PAHs) affects the shape and position
of their 3 μm absorption band. For this purpose, we present
mass-selected, high-resolution absorption spectra of cold and isolated
phenanthrene, pyrene, benz[a]antracene, chrysene, triphenylene, and
perylene molecules in the 2950–3150 cm−1 range. The
experimental spectra are compared with standard harmonic calculations
and anharmonic calculations using a modified version of the SPECTRO
program that incorporates a Fermi resonance treatment utilizing
intensity redistribution. We show that the 3 μm region is
dominated by the effects of anharmonicity, resulting in many more bands
than would have been expected in a purely harmonic approximation.
Importantly, we find that anharmonic spectra as calculated by SPECTRO
are in good agreement with the experimental spectra. Together with
previously reported high-resolution spectra of linear acenes, the
present spectra provide us with an extensive data set of spectra of PAHs
with a varying number of aromatic rings, with geometries that range
from open to highly condensed structures, and featuring CH groups in all
possible edge configurations. We discuss the astrophysical implications
of the comparison of these spectra on the interpretation of the
appearance of the aromatic infrared 3 μm band, and on features such as the two-component emission character of this band and the 3 μm emission plateau.
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| Document type | Article |
| Language | English |
| Published at | https://doi.org/10.3847/0004-637X/831/1/58 |
| Downloads |
Maltseva_2016_ApJ_831_58
(Final published version)
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