Photodesorption efficiency of OH radical on the ice surface in the wavelength range from ultraviolet to visible
arXiv:2406.02984 · doi:10.1016/j.cplett.2024.141384
Abstract
The photodesorption efficiencies of the hydroxyl (OH) radical from the water ice surface were measured in the range of 310-700 nm for the first time. Although isolated HO molecules and OH radicals do not absorb visible photons, the photodesorption of OH interacting with the ice surface was found to occur by a one-photon process in the entire visible range. The photodesorption efficiency strongly depended on the wavelength, and the analyses of photodesorption cross sections indicated that only strongly bound OH radicals were desorbed at longer wavelengths, whereas both weakly and strongly bound OH radicals were desorbed at shorter wavelengths.
11 pages, 6 figures
References in corpus (4)
- Complex Chemistry in Star-Forming Regions: An Expanded Gas-Grain Warm-up Chemical Model
- Vacuum-UV spectroscopy of interstellar ice analogs. I. Absorption cross-sections of polar-ice molecules
- Surface Diffusion of Carbon Atoms as a Driver of Interstellar Organic Chemistry
- Direct Determination of the Activation Energy for Diffusion of OH Radicals on Water Ice