Carriers of the mid-IR emission bands in PNe reanalysed. Evidence of a link between circumstellar and interstellar aromatic dust
arXiv:0809.1532 · doi:10.1051/0004-6361:20079061
Abstract
It has been shown that the diversity of the aromatic emission features can be rationalized into different classes of objects, in which differences between circumstellar and interstellar matter are emphasised. We probe the links between the mid-IR emitters observed in planetary nebulae (PNe) and their counterparts in the interstellar medium in order to probe a scenario in which the latter have been formed in the circumstellar environment of evolved stars. The mid-IR (6-14 um) emission spectra of PNe and compact HII regions were analysed on the basis of previous work on photodissociation regions (PDRs). Galactic, Large Magellanic Cloud (LMC), and Small Magellanic Cloud (SMC) objects were considered in our sample.We show that the mid-IR emission of PNe can be decomposed as the sum of six components. Some components made of polycyclic aromatic hydrocarbon (PAH) and very small grain (VSG) populations are similar to those observed in PDRs. Others are fitted in an evolutionary scenario involving the destruction of the aliphatic component observed in the post-AGB stage, as well as strong processing of PAHs in the extreme conditions of PNe that leads to a population of very large ionized PAHs. This species called PAH^x are proposed as the carriers of a characteristic band at 7.90 um. This band can be used as part of diagnostics that identify PNe in nearby galaxies and is also observed in galactic compact HII regions. These results support the formation of the aromatic very small dust particles in the envelopes of evolved stars, in the Milky Way, as well as in the LMC and SMC, and their subsequent survival in the interstellar medium.
Accepted for publication in A&A
References in corpus (10)
- Mid-IR Galaxy Classification Based on Silicate Obscuration and PAH Equivalent Width
- 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
- An evolutionary catalogue of Galactic post-AGB and related objects
- Spitzer Infrared Spectrograph Observations of Magellanic Cloud Planetary Nebulae: the nature of dust in low metallicity circumstellar ejecta
- A New Population of Planetary Nebulae Discovered in the Large Magellanic Cloud (II): Complete PN Catalogue
- A Spitzer IRS Spectral Atlas of Luminous 8 micron Sources in the Large Magellanic Cloud
- Aromatic emission from the ionised mane of the Horsehead nebula
- PAH Strength and the Interstellar Radiation Field around the Massive Young Cluster NGC3603
- The LMC's Top 250: Classification of the Most Luminous Compact 8 micron Sources in the Large Magellanic Cloud
Cited by in corpus (12)
- PDRs4All IV. An embarrassment of riches: Aromatic infrared bands in the Orion Bar
- The PAH emission characteristics of the reflection nebula NGC2023
- PDRs4All: A JWST Early Release Science Program on radiative feedback from massive stars
- Laboratory Photo-chemistry of PAHs: Ionization versus Fragmentation
- A Spitzer/IRS Spectrum of the 2008 Luminous Transient in NGC 300: Connection to Proto-Planetary Nebulae
- [SiPAH]+ pi-Complexes in the Interstellar Medium
- What can we learn about protoplanetary disks from analysis of mid-infrared carbonaceous dust emission?
- Observational Evidence Linking Interstellar UV Absorption to PAH Molecules
- Profile comparison of the 6-9 m polycyclic aromatic hydrocarbon bands in starburst-dominated galaxies
- PAH Spectral Diversity in NGC 7027 and the Evolution of Aromatic Carriers
- Dust SEDs in Milky Way-like galaxies in the IllustrisTNG simulations based on the evolution of grain size distribution
- JWST MIRI-MRS observations of the Red Rectangle: AIB class transformation in the outer nebula