Polyacenes and diffuse interstellar bands
arXiv:1903.11955 · doi:10.1051/0004-6361/201834953
Abstract
The identification of the carriers of the diffuse interstellar bands (DIBs) remains to be established, with the exception of five bands attributed to C60+, although it is generally agreed that DIB carriers should be large carbon-based molecules (with ~10-100 atoms) in the gas phase, such as polycyclic aromatic hydrocarbons (PAHs), long carbon chains or fullerenes. More specific possible carriers among PAHs are investigated, namely elongated molecules, which could explain a correlation between the DIB wavelength and the apparent UV resilience of their carriers. We address the case of polyacenes, C4N+2-H2N+4, with N~10-18 fused rectilinear aligned hexagons. Polyacenes are attractive DIB carrier candidates because their high symmetry and large linear size allow them to form regular series of bands in the visible range with strengths larger than most other PAHs, as confirmed by recent laboratory results up to undecacene (C46H26). Those with very strong bands in the DIB spectral domain are just at the limit of stability against UV photodissociation. They are part of the prominent PAH family of interstellar carbon compounds, meaning that only ~10-5 of the total PAH abundance is enough to account for a medium-strength DIB. After summarizing the current knowledge about the properties of polyacenes and recent laboratory results, the likelihood that they might meet the criteria for being carriers of some DIBs is addressed by reviewing the following properties: wavelength and strength of their series of visible bands; interstellar stability and abundances, charge state and hydrogenation; and DIB rotation profiles. No definite inconsistency has been identified that precludes polyacenes from being the carriers of some DIBs with medium or weak strength, including the so-called C2 DIBs. But additional experimental data about long acenes and their visible bands are needed to make robust conclusions
13 pages, 4 figures
References in corpus (15)
- The radical character of the acenes: A density matrix renormalization group study
- A Catalog of Diffuse Interstellar Bands in the Spectrum of HD 204827
- The Diffuse Interstellar Bands: A Major Problem in Astronomical Spectroscopy
- Studies of the Diffuse Interstellar Bands. III. HD 183143
- Laboratory formation of fullerenes from PAHs: Top-down interstellar chemistry
- A refined model for spinning dust radiation
- Time-dependent density functional study of the electronic spectra of oligoacenes in the charge states -1, 0, +1, and +2
- Laboratory Photo-chemistry of PAHs: Ionization versus Fragmentation
- Electronic Properties of Cyclacenes from TAO-DFT
- C and the Diffuse Interstellar Bands: An Independent Laboratory Check
- Characterizing the infrared spectra of small, neutral, fully dehydrogenated PAHs
- A Principal component analysis of the diffuse interstellar bands
- The Behavior of Selected Diffuse Interstellar Bands with Molecular Fraction in Diffuse Atomic and Molecular Clouds
- Abundances and rotational temperatures of the C2 interstellar molecule towards six reddened early-type stars
- Anisotropy and Size Effects on the Optical Spectra of Polycyclic Aromatic Hydrocarbons
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- Intermediate-size fullerenes as degradation products of interstellar PAHs
- Raman mapping of photodissociation regions
- The EDIBLES survey V: Line profile variations in the 5797, 6379, and 6614 diffuse interstellar bands as a tool to constrain carrier sizes
- The diffuse interstellar band around 8620 Å II. Kinematics and distance of the DIB carrier
- Hydrogenation of C carbon clusters : structural diversity and energetic properties
- Correlation between UV resilience and wavelength of narrow DIBs
- The Pristine Inner Galaxy Survey (PIGS) VI: Different vertical distributions between two DIBs at 442.8 nm and 862.1 nm
- The EDIBLES survey. X. The 6196 Å diffuse interstellar band: Identification of side DIBs as an indication of a small carrier molecule