Mid-IR and VUV spectroscopic characterisation of thermally processed and electron irradiated CO2 astrophysical ice analogues

[Display omitted] •Mid-IR and VUV spectra of thermally annealed and irradiated CO2 ices were studied.•Firstly, ices deposited at various temperatures were annealed to 70 K.•Secondly, the temperature-dependent formation of radiolytic products was assessed.•Spectra are sensitive to changes induced by...

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Veröffentlicht in:Journal of molecular spectroscopy 2022-03, Vol.385, p.111599, Article 111599
Hauptverfasser: Mifsud, D.V., Kaňuchová, Z., Ioppolo, S., Herczku, P., Traspas Muiña, A., Field, T.A., Hailey, P.A., Juhász, Z., Kovács, S.T.S., Mason, N.J., McCullough, R.W., Pavithraa, S., Rahul, K.K., Paripás, B., Sulik, B., Chou, S.-L., Lo, J.-I., Das, A., Cheng, B.-M., Rajasekhar, B.N., Bhardwaj, A., Sivaraman, B.
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Sprache:eng
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Zusammenfassung:[Display omitted] •Mid-IR and VUV spectra of thermally annealed and irradiated CO2 ices were studied.•Firstly, ices deposited at various temperatures were annealed to 70 K.•Secondly, the temperature-dependent formation of radiolytic products was assessed.•Spectra are sensitive to changes induced by thermal annealing and irradiation.•Our results are relevant to the study of interstellar and Solar System ices. The astrochemistry of CO2 ice analogues has been a topic of intensive investigation due to the prevalence of CO2 throughout the interstellar medium and the Solar System, as well as the possibility of it acting as a carbon feedstock for the synthesis of larger, more complex organic molecules. In order to accurately discern the physico-chemical processes in which CO2 plays a role, it is necessary to have laboratory-generated spectra to compare against observational data acquired by ground- and space-based telescopes. A key factor which is known to influence the appearance of such spectra is temperature, especially when the spectra are acquired in the infrared and ultraviolet. In this present study, we describe the results of a systematic investigation looking into: (i) the influence of thermal annealing on the mid-IR and VUV absorption spectra of pure, unirradiated CO2 astrophysical ice analogues prepared at various temperatures, and (ii) the influence of temperature on the chemical products of electron irradiation of similar ices. Our results indicate that both mid-IR and VUV spectra of pure CO2 ices are sensitive to the structural and chemical changes induced by thermal annealing. Furthermore, using mid-IR spectroscopy, we have successfully identified the production of radiolytic daughter molecules as a result of 1 keV electron irradiation and the influence of temperature over this chemistry. Such results are directly applicable to studies on the chemistry of interstellar ices, comets, and icy lunar objects and may also be useful as reference data for forthcoming observational missions.
ISSN:0022-2852
1096-083X
DOI:10.1016/j.jms.2022.111599