Chemical equilibrium in AGB atmospheres: Successes, failures, and prospects for small molecules, clusters, and condensates
arXiv:2004.00519 · doi:10.1051/0004-6361/202037496
Abstract
Chemical equilibrium has proven extremely useful to predict the chemical composition of AGB atmospheres. Here we use a recently developed code and an updated thermochemical database, including gaseous and condensed species involving 34 elements, to compute the chemical equilibrium composition of AGB atmospheres of M-, S-, and C-type stars. We include for the first time TixCy clusters, with x = 1-4 and y = 1-4, and selected larger clusters ranging up to Ti13C22, for which thermochemical data is obtained from quantum chemical calculations. We find that in general chemical equilibrium reproduces well the observed abundances of parent molecules in circumstellar envelopes of AGB stars. There are however severe discrepancies, of various orders of magnitude, for some parent molecules: HCN, CS, NH3, and SO2 in M-type stars, H2O and NH3 in S-type stars, and the hydrides H2O, NH3, SiH4, and PH3 in C-type stars. Several molecules not yet observed in AGB atmospheres, like SiC5, SiNH, SiCl, PS, HBO, and the metal-containing molecules MgS, CaS, CaOH, CaCl, CaF, ScO, ZrO, VO, FeS, CoH, and NiS, are good candidates for detection with observatories like ALMA. The first condensates predicted are carbon, TiC, and SiC in C-rich atmospheres and Al2O3 in O-rich outflows. The most probable gas-phase precursors of dust are acetylene, atomic carbon, and/or C3 for carbon dust, SiC2 and Si2C for SiC dust, and atomic Al and AlOH, AlO, and Al2O for Al2O3 dust. In the case of TiC dust, atomic Ti is probably the main supplier of titanium. However, chemical equilibrium predicts that clusters like Ti8C12 and Ti13C22 become the major reservoirs of titanium at the expense of atomic Ti in the region where condensation of TiC is expected to occur, suggesting that the assembly of large TixCy clusters could be related to the formation of the first condensation nuclei of TiC.
Accepted for publication in A&A. Abstract abridged. English edited with respect to previous version
References in corpus (34)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Oxygen Chemistry in the Circumstellar Envelope of the Carbon-Rich Star IRC+10216
- Pseudo 2D chemical model of hot Jupiter atmospheres: application to HD 209458b and HD 189733b
- New molecules in IRC+10216: confirmation of CS and tentative identification of MgCCH, NCCP, and SiHCN
- Confirmation of circumstellar phosphine
- A Detailed Analysis of the Dust Formation Zone of IRC+10216 Derived from Mid-IR Bands of C2H2 and HCN
- Warm water vapour in the sooty outflow from a luminous carbon star
- Optical constants of refractory oxides at high temperatures
- Carbon-rich dust past the asymptotic giant branch: aliphatics, aromatics, and fullerenes in the Magellanic Clouds
- Discovery of SiCSi in IRC+10216: A missing link between gas and dust carriers of SiC bonds
- The millimeter IRAM-30m line survey toward IK Tau
- The abundance of SiS in circumstellar envelopes around AGB stars
- ExoMol line lists XXIV: A new hot line list for silicon monohydride, SiH
- SiO in C-rich circumstellar envelopes of AGB stars: effects of non-LTE chemistry and grain adsorption
- Tentative detection of phosphine in IRC+10216
- Si-bearing molecules towards IRC+10216: ALMA unveils the molecular envelope of CWLeo
- An extensive grid of DARWIN models for M-type AGB stars I. Mass-loss rates and other properties of dust-driven winds
- The evolution of DARWIN: current status of wind models for AGB stars
- Clumpy dust clouds and extended atmosphere of the AGB star W Hya revealed with VLT/SPHERE-ZIMPOL and VLTI/AMBER II. Time variations between pre-maximum and minimum light
- Detailed modelling of the circumstellar molecular line emission of the S-type AGB star W Aquilae
- Water in IRC+10216: a genuine formation process by shock-induced chemistry in the inner wind
- Condensation of MgS in outflows from carbon stars
- The shock-heated atmosphere of an asymptotic giant branch star resolved by ALMA
- Discovery of the first Ca-bearing molecule in space: CaNC
- Resolving the extended stellar atmospheres of Asymptotic Giant Branch stars at (sub-)millimetre wavelengths
- An observational study of dust nucleation in Mira ( Ceti): II. Titanium oxides are negligible for nucleation at high temperatures
- Sulphur-bearing molecules in AGB stars I: The occurrence of hydrogen sulfide
- The complex dust formation zone of the AGB star IRC+10216 probed with CARMA 0.25 arcsec angular resolution molecular observations
- The abundance of C2H4 in the circumstellar envelope of IRC+10216
- The Role of Internal Photons on the Chemistry of the Circumstellar Envelopes of AGB Stars
- Herschel/PACS observations of the 69 band of crystalline olivine around evolved stars
- An ALMA view of CS and SiS around oxygen-rich AGB stars
- Clues to NaCN formation
- Gas infall and possible circumstellar rotation in R Leo
Cited by in corpus (13)
- The chemistry of cosmic dust analogues from C, C, and CH in C-rich circumstellar envelopes
- ATOMIUM: ALMA tracing the origins of molecules in dust forming oxygen rich M-type stars: Motivation, sample, calibration, and initial results
- The abundance of S- and Si-bearing molecules in O-rich circumstellar envelopes of AGB stars
- Silicon and hydrogen chemistry under laboratory conditions mimicking the atmosphere of evolved stars
- The surprisingly carbon-rich environment of the S-type star W Aql
- Chemical modelling of dust-gas chemistry within AGB outflows III. Photoprocessing of the ice and return to the ISM
- DEATHSTAR: Nearby AGB stars with the Atacama Compact Array II. CO envelope sizes and asymmetries: The S-type stars
- Molecules in the carbon-rich protoplanetary nebula CRL 2688
- Structure, stability and optical absorption spectra of small TiC clusters: a first-principles approach
- Molecular gas in 21 and 30 micron sources: the 2\,mm and 1.3\,mm spectra of IRAS\,21318+5631 and 22272+5435
- The Role of Ultraviolet Photons in Circumstellar Astrochemistry
- Detection of the S(1) Rotational Line of H2 toward IRC+10216: A Simultaneous Measurement of Mass-Loss Rate and CO Abundance
- Detection of infrared fluorescence of carbon dioxide in R Leonis with SOFIA/EXES