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Theoretical Water Binding Energy Distribution and Snowline in Protoplanetary Disks

Articolo
Data di Pubblicazione:
2023
Abstract:
Water is one of the most important and abundant molecules in star-forming regions. In protoplanetary disks, where planets and comets form, H2O is in a gas or solid form, depending on the dust temperature, i.e., the distance from the center and its binding energy (BE). Not surprisingly, several experimental and theoretical studies of the H2O BE have been published. We report new ab initio calculations carried out on a large model of interstellar ice, where we identified 144 different adsorption sites. The BE associated with those sites ranges between 14.2 kJ mol(-1) (1705 K) and 61.6 kJ mol(-1) (7390 K). The distribution of the computed BEs as a function of BE follows a Gaussian peaked at 35.4 kJ mol(-1) (4230 K) with a standard deviation of 9.7 kJ mol(-1) (1160 K). The computed pre-exponential factor (& nu;) ranges between 9 x 10(12) and 6 x 10(14) s(-1). We evaluated the impact of the newly calculated BE and & nu; distributions on the snowline of a generic protoplanetary disk. We found that the region where water is frozen onto the ice is much smaller (a factor of 10 smaller radius) than that computed with the single BE (5600 K) and & nu; (2 x 10(12) s(-1)) values commonly adopted by astrochemical models. Besides, & SIM;10% of water remains frozen in relatively warm (& SIM;150 K) regions, where the single BE and & nu; model would predict a full release of the ice in the gas phase. This last aspect may have an impact on the quantity trapped in the planetesimals eventually forming rocky planets.
Tipologia CRIS:
03A-Articolo su Rivista
Elenco autori:
Tinacci, L; Germain, A; Pantaleone, S; Ceccarelli, C; Balucani, N; Ugliengo, P
Autori di Ateneo:
PANTALEONE STEFANO
UGLIENGO Piero
Link alla scheda completa:
https://iris.unito.it/handle/2318/1945467
Link al Full Text:
https://iris.unito.it/retrieve/handle/2318/1945467/1213744/Tinacci_2023_ApJ_951_32.pdf
Pubblicato in:
THE ASTROPHYSICAL JOURNAL
Journal
Progetto:
UGLIENGO P. - ACO - AstroChemical Origins - Grant n.811312 - CDD: 17/04/2019
  • Dati Generali
  • Aree Di Ricerca

Dati Generali

URL

https://iopscience.iop.org/article/10.3847/1538-4357/accae8/meta

Aree Di Ricerca

Settori (7)


PE4_1 - Physical chemistry - (2022)

PE4_13 - Theoretical and computational chemistry - (2022)

PE9_5 - Interstellar medium and star formation - (2022)

INFORMATICA, AUTOMAZIONE e INTELLIGENZA ARTIFICIALE - Informatica per la Chimica

PIANETA TERRA, AMBIENTE, CLIMA, ENERGIA e SOSTENIBILITA' - Energia e Fonti Energetiche

SCIENZE MATEMATICHE, CHIMICHE, FISICHE - Cosmologia e Universo

SCIENZE MATEMATICHE, CHIMICHE, FISICHE - Materiali Avanzati
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