Sensitivity study of chemistry in AGB outflows using chemical kinetics
arXiv:2304.05924 · doi:10.1093/mnras/stad1152
Abstract
Asymptotic Giant Branch (AGB) stars shed a significant amount of their mass in the form of a stellar wind, creating a vast circumstellar envelope (CSE). Owing to the ideal combination of relatively high densities and cool temperatures, CSEs serve as rich astrochemical laboratories. {While the chemical structure of AGB outflows has been modelled and analysed in detail for specific physical setups, there is a lack of understanding regarding the impact of changes in the physical environment on chemical abundances. A systematic sensitivity study is necessary to comprehend the nuances in the physical parameter space, given the complexity of the chemistry. This is crucial for estimating uncertainties associated with simulations and observations. In this work, we present the first sensitivity study of the impact of varying outflow densities and temperature profiles on the chemistry. With the use of a chemical kinetics model, we report on the uncertainty in abundances, given a specific uncertainty on the physical parameters. }Additionally, we analyse the molecular envelope extent of parent species and compare our findings to observational studies. Mapping the impact of differences in physical parameters throughout the CSE on the chemistry is a strong aid to observational studies.
21 pages, 25 figures
References in corpus (13)
- Probing the mass-loss history of AGB and red supergiant stars from CO rotational line profiles I. Theoretical model -- Mass-loss history unravelled in VY CMa
- The dust condensation sequence in red super-giant stars
- Density-enhanced gas and dust shells in a new chemical model for IRC+10216
- Warm water vapour in the sooty outflow from a luminous carbon star
- Chemical equilibrium in AGB atmospheres: Successes, failures, and prospects for small molecules, clusters, and condensates
- SiO in C-rich circumstellar envelopes of AGB stars: effects of non-LTE chemistry and grain adsorption
- Evolution and Mass Loss of Cool Ageing Stars: a Daedalean Story
- Photodissociation of CO in the outflow of evolved stars
- The impact of stellar companion UV photons on the chemistry of the circumstellar environments of AGB stars
- Dust-gas chemistry in AGB outflows: Chemical modelling of dust-gas chemistry within AGB outflows I. Effect on the gas-phase chemistry
- The abundance of S- and Si-bearing molecules in O-rich circumstellar envelopes of AGB stars
- The photodissociation of CO in circumstellar envelopes
- The Role of Ultraviolet Photons in Circumstellar Astrochemistry
Cited by in corpus (4)
- ATOMIUM: Molecular inventory of 17 oxygen-rich evolved stars observed with ALMA
- Charting circumstellar chemistry of carbon-rich asymptotic giant branch stars. II. Abundances and spatial distributions of CS
- Exploring circumstellar chemistry in X-ray emitting AGB stars
- A rotational line CO cooling rate prescription for AGB outflows