A cryogenic ice setup to simulate carbon atom reactions in interstellar ices
arXiv:2004.06681 · doi:10.1063/5.0003692
Abstract
The design, implementation, and performance of a customized carbon atom beam source for the purpose of investigating solid-state reaction routes in interstellar ices in molecular clouds are discussed. The source is integrated into an existing ultrahigh vacuum setup, SURFace REaction SImulation DEvice (SURFRESIDE), which extends this double atom (H/D, O, and N) beamline apparatus with a third atom (C) beamline to a unique system that is fully suited to explore complex organic molecule solid-state formation under representative interstellar cloud conditions. The parameter space for this system is discussed, which includes the flux of the carbon atoms hitting the ice sample, their temperature, and the potential impact of temperature on ice reactions. Much effort has been put into constraining the beam size to within the limits of the sample size with the aim to reduce carbon pollution inside the setup. How the C-atom beam performs is quantitatively studied through the example experiment, C + O, and supported by computationally-derived activation barriers. The potential for this source to study the solid-state formation of interstellar complex organic molecules through C-atom reactions is discussed.
Accepted for publication in Review of Scientific Instruments
References in corpus (15)
- Formation of methyl formate and other organic species in the warm-up phase of hot molecular cores
- Formation of Complex Molecules in Prestellar Cores: a Multilayer Approach
- The largest oxigen bearing organic molecule repository
- Atom addition reactions in interstellar ice analogues
- Multilayer formation and evaporation of deuterated ices in prestellar and protostellar cores
- Formation of Glycerol through Hydrogenation of CO ice under Prestellar Core Conditions
- An experimental study of the surface formation of methane in interstellar molecular clouds
- A primordial origin for molecular oxygen in comets: A chemical kinetics study of the formation and survival of O ice from clouds to disks
- Molecular dynamics simulations of the ice temperature dependence of water ice photodesorption
- Atom Tunneling in the Water Formation Reaction H + OH HO + H on an Ice Surface
- Formation of interstellar propanal and 1-propanol ice: a pathway involving solid-state CO hydrogenation
- Formation of Acetaldehyde on CO-rich Ices
- Experimental Characterization of the Energetics of Low-temperature Surface Reactions
- Alcohols on the rocks: solid-state formation in a H3CCCH + OH cocktail under dark cloud conditions
- Comparison of classical reaction paths and tunneling paths studied with the semiclassical instanton theory
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- Did life originate from low-temperature areas of the Universe?
- Methoxymethanol Formation Starting from CO-Hydrogenation