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  A new method for simulating photoprocesses in astrochemical models

Mullikin, E., Anderson, H., O’Hern, N., Farrah, M., Arumainayagam, C. R., Dishoeck, E. F. v., et al. (2021). A new method for simulating photoprocesses in astrochemical models. The Astrophysical Journal, 910(1): 72. doi:10.3847/1538-4357/abd778.

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A New Method for Simulating Photoprocesses in Astrochemical Models.pdf (Any fulltext), 289KB
 
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Mullikin, Ella, Author
Anderson, Hannah, Author
O’Hern, Natalie, Author
Farrah, Megan, Author
Arumainayagam, Christopher R., Author
Dishoeck, Ewine F. van1, Author           
Gerakines, Perry A., Author
Vasyunin, Anton I., Author
Majumdar, Liton, Author
Caselli, Paola, Author
Shingledecker, Christopher N., Author
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1Infrared and Submillimeter Astronomy, MPI for Extraterrestrial Physics, Max Planck Society, ou_159889              

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 Abstract: We propose a new model for treating solid-phase photoprocesses in interstellar ice analogs. In this approach, photoionization and photoexcitation are included in more detail, and the production of electronically excited (suprathermal) species is explicitly considered. In addition, we have included nonthermal, nondiffusive chemistry to account for the low-temperature characteristic of cold cores. As an initial test of our method, we have simulated two previous experimental studies involving the UV irradiation of pure solid O2. In contrast to previous solid-state astrochemical model calculations, which have used gas-phase photoabsorption cross-sections, we have employed solid-state cross-sections in our calculations. This method allows the model to be tested using well-constrained experiments rather than poorly constrained gas-phase abundances in interstellar medium regions. Our results indicate that inclusion of nonthermal reactions and suprathermal species allows for reproduction of low-temperature solid-phase photoprocessing that simulates interstellar ices within cold (~10 K) dense cores such as TMC-1.

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 Dates: 2021-03-26
 Publication Status: Published online
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 Identifiers: DOI: 10.3847/1538-4357/abd778
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Title: The Astrophysical Journal
Source Genre: Journal
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Publ. Info: Bristol; Vienna : IOP Publishing; IAEA
Pages: - Volume / Issue: 910 (1) Sequence Number: 72 Start / End Page: - Identifier: ISSN: 0004-637X
CoNE: https://pure.mpg.de/cone/journals/resource/954922828215_3