Dissociative photoionization of polycyclic aromatic hydrocarbon molecules carrying an ethynyl group
arXiv:1508.00259 · doi:10.1088/0004-637X/810/2/114
Abstract
The life cycle of the population of interstellar polycyclic aromatic hydrocarbon (PAH) molecules depends partly on the photostability of the individual species. We have studied the dissociative photoionization of two ethynyl-substituted PAH species, namely, 9-ethynylphenanthrene and 1-ethynylpyrene. Their adiabatic ionization energy and the appearance energy of fragment ions have been measured with the photoelectron photoion coincidence (PEPICO) spectroscopy technique. The adiabatic ionization energy has been found at 7.84 +/- 0.02 eV for 9-ethynylphenanthrene and at 7.41 +/- 0.02 eV for 1-ethynylpyrene. These values are similar to those determined for the corresponding non-substituted PAH molecules phenanthrene and pyrene. The appearance energy of the fragment ion indicative of the loss of a H atom following photoionization is also similar for either ethynyl-substituted PAH molecule and its non-substituted counterpart. The measurements are used to estimate the critical energy for the loss of a H atom by the PAH cations and the stability of ethynyl-substituted PAH molecules upon photoionization. We conclude that these PAH derivatives are as photostable as the non-substituted species in HI regions. If present in the interstellar medium, they may play an important role in the growth of interstellar PAH molecules.
Accepted for publication in Astrophys. J. on 1 August 2015, 19 pages, 6 figures, 1 table
References in corpus (6)
- Ethynyl (C2H) in massive star formation: Tracing the initial conditions?
- Laboratory Photo-chemistry of PAHs: Ionization versus Fragmentation
- Carbon in different phases ([CII], [CI], and CO) in infrared dark clouds: Cloud formation signatures and carbon gas fractions
- A sensitive spectral survey of interstellar features in the near-UV [3050-3700Å]
- The smoothness of the interstellar extinction curve in the UV. Comparison with recent laboratory measurements of PAH mixtures
- Polyynyl-substituted PAH molecules and DIB carriers