Oscillations in Gas-grain Astrochemical Kinetics
arXiv:2304.14428 · doi:10.1093/mnras/stad110
Abstract
We have studied gas-grain chemical models of interstellar clouds to search for nonlinear dynamical evolution. A prescription is given for producing oscillatory solutions when a bistable solution exists in the gas-phase chemistry and we demonstrate the existence of limit cycle and relaxation oscillation solutions. As the autocatalytic chemical processes underlying these solutions are common to all models of interstellar chemistry, the occurrence of these solutions should be widespread. We briefly discuss the implications for interpreting molecular cloud composition with time-dependent models and some future directions for this approach.
9 pages, 3 figures, 1 table
References in corpus (8)
- Cold Dark Clouds: The Initial Conditions for Star Formation
- Binding energies: new values and impact on the efficiency of chemical desorption
- Sensitivity analysis of grain surface chemistry to binding energies of ice species
- Efficiency of non-thermal desorptions in cold-core conditions. Testing the sputtering of grain mantles induced by cosmic rays
- Why does ammonia not freeze out in the center of pre-stellar cores?
- A New Determination of the Binding Energy of Atomic Oxygen on Dust Grain Surfaces: Experimental Results and Simulations
- Neural-Network Assisted Study of Nitrogen Atom Dynamics on Amorphous Solid Water. I. Adsorption & Desorption
- New Bistable Solutions in Molecular Cloud Chemistry: Nitrogen and Carbon Autocatalysis