Evolution of PAHs in photodissociation regions: Hydrogenation and charge states
J. Montillaud, C. Joblin, D. Toublanc

TL;DR
This study models the spatial evolution of charge and hydrogenation states of PAHs in PDRs, revealing complex behaviors influenced by UV radiation and providing insights consistent with observations in NGC 7023 NW.
Contribution
The paper introduces a new PAH chemical evolution model incorporating recent experimental data and multiphoton events, applied to PDRs and the diffuse ISM.
Findings
PAHs evolve into three major populations based on size and hydrogenation.
PAHs smaller than 50 carbon atoms are unlikely to survive in NGC 7023 NW.
Carbon clusters are the end products of PAH photodissociation.
Abstract
Various studies have emphasized variations of the charge state and composition of the interstellar polycyclic aromatic hydrocarbon (PAH) population in photodissociation regions (PDRs). We aim to model the spatial evolution of the charge and hydrogenation states of PAHs in PDRs. We focus on the specific case of the north-west (NW) PDR of NGC 7023 and also discuss the case of the diffuse interstellar medium (ISM). The physical conditions in NGC 7023 NW are modelled using a state-of-the-art PDR code. We then use a new PAH chemical evolution model that includes recent experimental data on PAHs and describes multiphoton events. We consider a family of compact PAHs bearing up to 96 carbon atoms. The calculated ionization ratio is in good agreement with observations in NGC 7023 NW. Within the PDR, PAHs evolve into three major populations: medium-sized PAHs (50<Nc<90) are normally hydrogenated,…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Atmospheric Ozone and Climate · Advanced Chemical Physics Studies
