The 5.25 & 5.7 m Astronomical Polycyclic Aromatic Hydrocarbon Emission Features
arXiv:0809.1619 · doi:10.1088/0004-637X/690/2/1208 10.1088/0004-637X/694/1/704
Abstract
Astronomical mid-IR spectra show two minor PAH features at 5.25 and 5.7 m (1905 and 1754 cm) that hitherto have been little studied, but contain information about the astronomical PAH population that complements that of the major emission bands. Here we report a study involving both laboratory and theoretical analysis of the fundamentals of PAH spectroscopy that produce features in this region and use these to analyze the astronomical spectra. The ISO SWS spectra of fifteen objects showing these PAH features were considered for this study, of which four have sufficient S/N between 5 and 6 m to allow for an in-depth analysis. All four astronomical spectra show similar peak positions and profiles. The 5.25 m feature is peaked and asymmetric, while the 5.7 m feature is broader and flatter. Detailed analysis of the laboratory spectra and quantum chemical calculations show that the astronomical 5.25 and 5.7 m bands are a blend of combination, difference and overtone bands primarily involving CH stretching and CH in-plane and CH out-of-plane bending fundamental vibrations. The experimental and computational spectra show that, of all the hydrogen adjacency classes possible on PAHs, solo and duo hydrogens consistently produce prominent bands at the observed positions whereas quartet hydrogens do not. In all, this a study supports the picture that astronomical PAHs are large with compact, regular structures. From the coupling with primarily strong CH out-of-plane bending modes one might surmise that the 5.25 and 5.7 m bands track the neutral PAH population. However, theory suggests the role of charge in these astronomical bands might also be important.
Accepted ApJ, 40 pages in pre-print, 14 figures, two online
References in corpus (5)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- The Mid-Infrared Spectrum of Star-Forming Galaxies: Global Properties of PAH Emission
- The infrared spectra of very large, compact, highly symmetric, polycyclic aromatic hydrocarbons (PAHs)
- Formation and destruction of polycyclic aromatic hydrocarbon clusters in the interstellar medium
- The 15 - 20 Micron Spitzer Spectra of Interstellar Emission Features in NGC 7023
Cited by in corpus (18)
- PDRs4All IV. An embarrassment of riches: Aromatic infrared bands in the Orion Bar
- All the PAHs: an AKARI-Spitzer Cross Archival Spectroscopic Survey of Aromatic Emission in Galaxies
- Observations of the Near- to Mid-Infrared Unidentified Emission Bands in the Interstellar Medium of the Large Magellanic Cloud
- Characterizing the infrared spectra of small, neutral, fully dehydrogenated PAHs
- PAH Spectroscopy from 1-5 m
- Anharmonicity in the mid-infrared spectra of polycyclic aromatic hydrocarbons: Molecular beam spectroscopy and calculations
- Low-Resolution Spectrum of the Diffuse Galactic Light and 3.3 um PAH emission with AKARI InfraRed Camera
- Linking Characteristics of the Polycyclic Aromatic Hydrocarbon Population with Galaxy Properties: A Quantitative Approach Using the NASA Ames PAH IR Spectroscopic Database
- Observational studies on the Near-Infrared Unidentified Emission Bands in Galactic HII regions
- A JWST/MIRI analysis of the ice distribution and PAH emission in the protoplanetary disk HH 48 NE
- The 6 m Feature as A Tracer of Aliphatic Components of Interstellar Carbonaceous Grains
- PDRs4All XVI. Tracing aromatic infrared band characteristics in photodissociation region spectra with PAHFIT in the JWST era
- A Principal Component Analysis of polycyclic aromatic hydrocarbon emission in NGC 7023
- PDRs4All: XVIII. The evolution of the PAH ionisation and PAH size distribution across the Orion Bar
- A Survey of 3 to 5.4 Micron Emission From Planetary Nebulae using SOFIA/FLITECAM
- Aromatic Species in the Molecular Universe
- Void defect induced magnetism and structure change of carbon material-3, Polycyclic aromatic hydrocarbon
- JWST observations of photodissociation regions. IV. Carbonaceous emission band sub-components in NGC 7023 have distinct spatial distributions