Photo-processing of astro-PAHs
Date Issued
2020
Author(s)
Joblin, C.
•
Wenzel, G.
•
Rodriguez Castillo, S.
•
Simon, A.
•
Sabbah, H.
•
Bonnamy, A.
•
Toublanc, D.
•
•
Ji, M.
•
•
Nahon, L.
Abstract
Polycyclic aromatic hydrocarbons (PAHs) are key species in astrophysical environments in which vacuum ultraviolet (VUV) photons are present, such as star-forming regions. The interaction with these VUV photons governs the physical and chemical evolution of PAHs. Models show that only large species can survive. However, the actual molecular properties of large PAHs are poorly characterized and the ones included in models are only an extrapolation of the properties of small and medium-sized species. We discuss here experiments performed on trapped ions including some at the SOLEIL VUV beam line DESIRS. We focus on the case of the large dicoronylene cation, {{{C}}}48{{{H}}}20+, and compare its behavior under VUV processing with that of smaller species. We suggest that C2 H2 is not a relevant channel in the fragmentation of large PAHs. Ionization is found to largely dominate fragmentation. In addition, we report evidence for a hydrogen dissociation channel through excited electronic states. Although this channel is minor, it is already effective below 13.6 eV and can significantly influence the stability of astro-PAHs. We emphasize that the competition between ionization and dissociation in large PAHs should be further evaluated for their use in astrophysical models....
Coverage
31st International Conference on Photonic, Electronic and Atomic Collisions (ICPEAC XXXI)
Volume
1412
Issue
6
Start page
062002
Conferenece
31st International Conference on Photonic, Electronic and Atomic Collisions (ICPEAC XXXI)
Conferenece place
Deauville, France
Conferenece date
July 23-30, 2019
Issn Identifier
1742-6588
Rights
open.access
File(s)![Thumbnail Image]()
Loading...
Name
Joblin_2020_J._Phys. _Conf._Ser._1412_062002.pdf
Description
Pdf editoriale
Size
1.15 MB
Format
Adobe PDF
Checksum (MD5)
930d0b7c7660d4c9fbfae9401d9d0536
