Formation of unsaturated hydrocarbons in interstellar ice analogs by cosmic rays
S. Pilling (UNIVAP), D. P. P. Andrade (UNIVAP), E. F. da Silveira, (PUC-Rio), H. Rothard (GANIL/CIRIL), A. Domaracka (GANIL/CIRIL), P. Boduch, (GANIL/CIRIL)

TL;DR
This study investigates how cosmic rays induce the formation of unsaturated hydrocarbons and aromatic rings in interstellar ice analogs, revealing new pathways for complex molecule synthesis in space.
Contribution
It demonstrates that cosmic ray processing of interstellar ices can produce unsaturated hydrocarbons and aromatic compounds, offering an alternative formation mechanism in space environments.
Findings
Formation of double and triple C-C bonds in ices by cosmic rays
Identification of unsaturated hydrocarbons like hexene, cyclohexene, benzene
Determination of dissociation cross sections and half-lives of cyclohexane
Abstract
The formation of double and triple C-C bonds from the processing of pure c-C6H12 (cyclohexane) and mixed H2O:NH3:c-C6H12 (1:0.3:0.7) ices by highly-charged, and energetic ions (219 MeV O^{7+} and 632 MeV Ni^{24+}) is studied. The experiments simulate the physical chemistry induced by medium-mass and heavy-ion cosmic rays in interstellar ices analogs. The measurements were performed inside a high vacuum chamber at the heavy-ion accelerator GANIL (Grand Accel\'erat\'eur National d'Ions Lourds) in Caen, France. The gas samples were deposited onto a polished CsI substrate previously cooled to 13 K. In-situ analysis was performed by a Fourier transform infrared (FTIR) spectrometry at different ion fluences. Dissociation cross section of cyclohexane and its half-life in astrophysical environments were determined. A comparison between spectra of bombarded ices and young stellar sources…
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