What can thermochemical models tell us about the cold H2O in disks? Marissa Vlasblom
[email protected]||ESO New Frontiers - 12/03/25 || Image: M. Vlasblom
Water in disks Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 || ❖H2O is formed in the inner regions through gas-phase formation ❖Beyond the snowline, it is frozen out on the dust grains ❖Radial drift & sublimation can enhance inner disk H2O reservoir! Marissa Vlasblom
[email protected]||ESO New Frontiers - 12/03/25 || Ref: Miotello et al. (2023)
Water in disks ❖Many ro-vibrational & rotational H2O lines seen with JWST-MIRI! Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 ||Marissa Vlasblom
[email protected]||ESO New Frontiers - 12/03/25 || Ref: Temmink et al. (2024a,b) For more H2O as seen with MIRI: see Milou Temmink’s poster!
Water in disks ❖Dust And LInes (DALI) ➢1) Dust radiative transfer ➢2) Chemistry + thermal balance + excitation ➢3) Raytracing Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 ||Marissa Vlasblom
[email protected]||ESO New Frontiers - 12/03/25 || H2O probed by JWST H2O probed by FIR/mm ❖JWST probes wide range of Eup ~1000 - 8000 K ❖Coldest H2O Eup <1000 K is probed by FIR/mm DALI: Bruderer et al. (2012, 2013)
Water in disks ❖Rotational H2O spectrum covers a wide range of excitation conditions ❖Can the lines tracing colder material tell us what is happening at the snowline? Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 ||Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 ||Marissa Vlasblom
[email protected]||ESO New Frontiers - 12/03/25 || Ref: Banzatti et al. (2023)
Cold H2O emission ❖Lines around 23.8 micron are a good diagnostic for presence of cold H2O Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 || Warm emission only Needs a cold component! Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 ||Marissa Vlasblom
[email protected] 1500 K 3000 K ||ESO New Frontiers - 12/03/25 || Ref: Banzatti et al. (2020, 2023, 2025); Romero-Mirza et al. (2024)
Cold H2O emission ❖Lines around 23.8 micron are a good diagnostic for presence of cold H2O ❖Strong cold H2O is mainly seen in compact disks Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 || ? ? dust gas Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 ||Marissa Vlasblom
[email protected] Strong drift?Dust trapping? ❖Observations show diversity in these lines →what drives this? 1500 K 3000 K ||ESO New Frontiers - 12/03/25 || Ref: Banzatti et al. (2020, 2023, 2025); Romero-Mirza et al. (2024), Temmink et al. (subm.) →see Milou Temmink’s poster!
Thermochemical modeling ❖Can skip chemistry and parameterize abundances instead Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 ||Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 ||Marissa Vlasblom
[email protected]||ESO New Frontiers - 12/03/25 || Ref: Vlasblom et al. (in prep.)
Thermochemical modeling ❖Can skip chemistry and parameterize abundances instead ❖Generate synthetic spectra with DALI models Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 ||Marissa Vlasblom
[email protected]||Astrochemistry seminar 25/11/24 ||Marissa Vlasblom
[email protected]||ESO New Frontiers - 12/03/25 || Chemistry → warm Param. abu. → cold ❖When determining the H2O abundance via the chemical network, the cold lines are not very prominent! Ref: Vlasblom et al. (in prep.)