The Carriers of the Interstellar Unidentified Infrared Emission Features: Constraints from the Interstellar C-H Stretching Features at 3.2-3.5 Micrometers
X.J. Yang, R. Glaser, Aigen Li, J.X. Zhong (University of, Missouri/Xiangtan University)

TL;DR
This study refines the estimate of aliphatic content in interstellar UIE carriers, concluding they are mainly aromatic with less than 2% aliphatic carbon, based on analysis of 35 sources and quantum chemical calculations.
Contribution
It provides a more accurate assessment of the aliphatic fraction in UIE carriers by analyzing a larger sample and employing advanced computational methods.
Findings
Median I_3.4/I_3.3 ratio is ~0.12
A_3.4/A_3.3 ratio averages ~1.76 from calculations
Aliphatic carbon fraction is estimated to be around 2%
Abstract
The unidentified infrared emission (UIE) features at 3.3, 6.2, 7.7, 8.6, and 11.3 micrometer, commonly attributed to polycyclic aromatic hydrocarbon (PAH) molecules, have been recently ascribed to mixed aromatic/aliphatic organic nanoparticles. More recently, an upper limit of <9% on the aliphatic fraction (i.e., the fraction of carbon atoms in aliphatic form) of the UIE carriers based on the observed intensities of the 3.4 and 3.3 micrometer emission features by attributing them to aliphatic and aromatic C-H stretching modes, respectively, and assuming A_34./A_3.3~0.68 derived from a small set of aliphatic and aromatic compounds, where A_3.4 and A_3.3 are respectively the band strengths of the 3.4 micrometer aliphatic and 3.3 micrometer aromatic C-H bonds. To improve the estimate of the aliphatic fraction of the UIE carriers, here we analyze 35 UIE sources which exhibit both the 3.3…
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