Thermal H/D exchange in polar ice - deuteron scrambling in space
arXiv:1502.03584 · doi:10.1093/mnras/stv278
Abstract
We have investigated the thermally induced proton/deuteron exchange in mixed amorphous HO:DO ices by monitoring the change in intensity of characteristic vibrational bending modes of HO, HDO, and DO with time and as function of temperature. The experiments have been performed using an ultra-high vacuum setup equipped with an infrared spectrometer that is used to investigate the spectral evolution of homogeneously mixed ice upon co-deposition in thin films, for temperatures in the 90 to 140 K domain. With this non-energetic detection method we find a significantly lower activation energy for H/D exchange -- K -- than previously reported. Very likely this is due to the amorphous nature of the interstellar ice analogues involved. This provides reactive timescales ( years at K) fast enough for the process to be important in interstellar environments. Consequently, an astronomical detection of DO will be even more challenging because of its potential to react with HO to form HDO. Furthermore, additional experiments, along with previous studies, show that proton/deuteron swapping also occurs in ice mixtures of water with other hydrogen bonded molecules, in particular on the OH and NH moieties. We conclude that H/D exchange in ices is a more general process that should be incorporated into ice models that are applied to protoplanetary disks or to simulate the warming up of cometary ices in their passage of the perihelion, to examine the extent of its influence on the final deuteron over hydrogen ratio.
10 pages, 8 figures, accepted for publication in MNRAS
References in corpus (7)
- Cold Dark Clouds: The Initial Conditions for Star Formation
- The ancient heritage of water ice in the solar system
- Water Delivery and Giant Impacts in the 'Grand Tack' Scenario
- Laboratory evidence for efficient water formation in interstellar ices
- Formation of hydrogen peroxide and water from the reaction of cold hydrogen atoms with solid oxygen at 10K
- Efficient Surface Formation Route of Interstellar Hydroxylamine through NO Hydrogenation II: the multilayer regime in interstellar relevant ices
- High DO/HDO ratio in the inner regions of the low-mass protostar NGC1333 IRAS2A
Cited by in corpus (9)
- Atom addition reactions in interstellar ice analogues
- Water in star-forming regions (WISH): Physics and chemistry from clouds to disks as probed by Herschel spectroscopy
- Prestellar grain-surface origins of deuterated methanol in comet 67P/Churyumov-Gerasimenko
- Laboratory and Computational Studies of Interstellar Ices
- Influence of surface and bulk water ice on the reactivity of a water-forming reaction
- JWST detections of amorphous and crystalline HDO ice toward massive protostars
- Broadband infrared spectroscopy of methanol isotopologues in pure, H2O-rich, and CO-rich ice analogues
- Infrared resonant vibrationally induced restructuring of amorphous solid water
- Insight into the origin of cometary ices from Rosetta/ROSINA mass spectrometer data