Mixed aliphatic and aromatic composition of evaporating very small grains in NGC 7023 revealed by the 3.4/3.3 m ratio
arXiv:1502.04941 · doi:10.1051/0004-6361/201425590
Abstract
In photon-dominated regions (PDRs), UV photons from nearby stars lead to the evaporation of very small grains (VSGs) and the production of gas-phase polycyclic aromatic hydrocarbons (PAHs). Our goal is to achieve better insight into the composition and evolution of evaporating very small grains (eVSGs) and PAHs through analyzing the infrared (IR) aliphatic and aromatic emission bands. We combined spectro-imagery in the near- and mid-IR to study the spatial evolution of the emission bands in the prototypical PDR NGC 7023. We used near-IR spectra obtained with AKARI to trace the evolution of the 3.3m and 3.4m bands, which are associated with aromatic and aliphatic C-H bonds on PAHs. The spectral fitting involves an additional broad feature centred at 3.45m. Mid-IR observations obtained with Spitzer are used to discriminate the signatures of eVSGs, neutral and cationic PAHs. We correlated the spatial evolution of all these bands with the intensity of the UV field to explore the processing of their carriers. The intensity of the 3.45m plateau shows an excellent correlation with that of the 3.3m aromatic band (correlation coefficient R = 0.95), indicating that the plateau is dominated by the emission from aromatic bonds. The ratio of the 3.4m and 3.3m band intensity () decreases by a factor of 4 at the PDR interface from the more UV-shielded to the more exposed layers. The transition region between the aliphatic and aromatic material is found to correspond spatially with the transition zone between neutral PAHs and eVSGs. We conclude that the photo-processing of eVSGs leads to the production of PAHs with attached aliphatic sidegroups that are revealed by the 3.4m emission band. Our analysis provides evidence for the presence of very small grains of mixed aromatic and aliphatic composition in PDRs.
Accepted for publication in A&A. Abstract abridged, language editing applied in v2
References in corpus (6)
- On-line database of the spectral properties of polycyclic aromatic hydrocarbons
- The unusual hydrocarbon emission from the early carbon star HD 100764: The connection between aromatics and aliphatics
- Formation and destruction of polycyclic aromatic hydrocarbon clusters in the interstellar medium
- Characterisation of the magnetic field of the Herbig Be star HD 200775
- A general model for the identification of specific PAHs in the far-IR
- Absolute evaporation rates of non-rotating neutral PAH clusters
Cited by in corpus (28)
- Discovery of benzyne, o-C6H4, in TMC-1 with the QUIJOTE line survey
- PDRs4All IV. An embarrassment of riches: Aromatic infrared bands in the Orion Bar
- PDRs4All III: JWST's NIR spectroscopic view of the Orion Bar
- PDRs4All: A JWST Early Release Science Program on radiative feedback from massive stars
- Further ALMA observations and detailed modeling of the Red Rectangle
- The chemistry of cosmic dust analogues from C, C, and CH in C-rich circumstellar envelopes
- The essential elements of dust evolution: A viable solution to the interstellar oxygen depletion problem?
- Nano carbon dust emission in proto-planetary disks: the aliphatic-aromatic components
- Simulating the structural diversity of carbon clusters across the planar to fullerene transition
- PDRs4All VI: Probing the Photochemical Evolution of PAHs in the Orion Bar Using Machine Learning Techniques
- PDRs4All. XII. FUV-driven formation of hydrocarbon radicals and their relation with PAHs
- PDRs4All VII. The 3.3 m aromatic infrared band as a tracer of physical properties of the ISM in galaxies
- Spectral variations among different scenarios of PAH processing or formation
- Formation of c-C6H5CN ice using the SPACE TIGER experimental setup
- Characterizing Spatial Variations of PAH Emission in the Reflection Nebula NGC 1333
- Rotational excitation of interstellar benzonitrile by helium atoms
- PDRs4All. V. Modelling the dust evolution across the illuminated edge of the Orion Bar
- Laboratory formation and photo-chemistry of fullerene/anthracene cluster cations
- Long-Lived Isomers of CH: New Experimental Insights from the PIRENEA Setup
- PDRs4All: XVIII. The evolution of the PAH ionisation and PAH size distribution across the Orion Bar
- Processing of hydrocarbon dust in star-forming galaxies revealed with AKARI
- Tracing PAH Size in Prominent Nearby Mid-Infrared Environments
- Not just PAH: why galaxies turn red in the Near-Infrared
- Acenaphthene Derivatives as Signatures of CH Reactivity with Methylated Naphthalenes
- The Influence of Aliphatic Components on the Aromatic Emission Characteristics of Polycyclic Aromatic Hydrocarbons
- JWST observations of photodissociation regions III. Dust modelling at the illuminated edge of the Horsehead PDR
- The nature and evolution of a-C(:H) nanoparticle substructures and speculations on the origin of the 3-4m emission bands
- JWST observations of photodissociation regions. IV. Carbonaceous emission band sub-components in NGC 7023 have distinct spatial distributions