Icy molecule desorption in interstellar grain collisions
arXiv:2207.00314 · doi:10.1093/mnras/stac1792
Abstract
Observations of gaseous complex organic molecules (COMs) in cold starless and prestellar cloud cores require efficient desorption of the COMs and their parent species from icy mantles on interstellar grains. With a simple astrochemical model, we investigate if mechanical removal of ice fragments in oblique collisions between grains in two size bins (0.01 and 0.1 micron) can substantially affect COM abundances. Two grain collision velocities were considered - 10 and 50 meters per second, corresponding to realistic grain relative speeds arising from ambipolar diffusion and turbulence, respectively. From the smaller grains, the collisions are assumed to remove a spherical cap with height equal to 1/3 and 1 ice mantle thickness, respectively. We find that the turbulence-induced desorption can elevate the gas-phase abundances of COMs by several orders of magnitude, reproducing observed COM abundances within an order of magnitude. Importantly, the high gaseous COM abundances are attained for long time-scales of up to 1 Myr and for a rather low methanol ice abundance, common for starless cores. The simple model, considering only two grain size bins and several assumptions, demonstrates a concept that must be tested with a more sophisticated approach.
Accepted in MNRAS
References in corpus (18)
- Complex Chemistry in Star-Forming Regions: An Expanded Gas-Grain Warm-up Chemical Model
- Closed-form expressions for particle relative velocities induced by turbulence
- Binding energies: new values and impact on the efficiency of chemical desorption
- Formation of Complex Molecules in Prestellar Cores: a Multilayer Approach
- The Spatial Distribution of Complex Organic Molecules in the L1544 Pre-stellar Core
- Monte Carlo simulations of H2 formation on stochastically heated grains
- Water delivery from cores to disks: deuteration as a probe of the prestellar inheritance of H2O
- JCMT POL-2 and BISTRO Survey observations of magnetic fields in the L1689 molecular cloud
- Two Extreme Young Objects in Barnard 1-b
- Rapid Elimination of Small Dust Grains in Molecular Clouds
- CB17: Inferring the dynamical history of a prestellar core with chemo-dynamical models
- A new model of the chemistry of ionizing radiation in solids: CIRIS
- The effect of selective desorption mechanisms during interstellar ice formation
- Effect of grain size distribution and size-dependent grain heating on molecular abundances in starless and pre-stellar cores
- TRAO Survey of the nearby filamentary molecular clouds, the universal nursery of stars (TRAO FUNS). II. Filaments and Dense cores in IC 5146
- The connection between warm carbon chain chemistry and interstellar irradiation of star-forming cores
- Ice mantles on dust grains: dramatic variation of thickness with grain size
- Evaporative cooling of icy interstellar grains II. Key parameters