The water molecule is a key ingredient in the formation of planetary systems, with the water snowline being a favourable location for the growth of massive planetary cores. Here we present Atacama Large Millimeter/submillimeter Array data of the ringed protoplanetary disk orbiting the young star HL Tauri that show centrally peaked, bright emission arising from three distinct transitions of the main water isotopologue (). The spatially and spectrally resolved water content probes gas in a thermal range down to the water sublimation temperature. Our analysis implies a stringent lower limit of 3.7 Earth oceans of water vapour available within the inner 17 astronomical units of the system. We show that our observations are limited to probing the water content in the atmosphere of the disk, due to the high dust column density and absorption, and indicate that the main water isotopologue is the best tracer to spatially resolve water vapour in protoplanetary disks.

Resolved ALMA observations of water in the inner astronomical units of the HL Tau disk / S. Facchini, L. Testi, E. Humphreys, M. Vander Donckt, A. Isella, R. Wrzosek, A. Baudry, M.D. Gray, A.M.S. Richards, W. Vlemmmings. - In: NATURE ASTRONOMY. - ISSN 2397-3366. - 8:5(2024 May), pp. 587-595. [10.1038/s41550-024-02207-w]

Resolved ALMA observations of water in the inner astronomical units of the HL Tau disk

S. Facchini
Primo
;
2024

Abstract

The water molecule is a key ingredient in the formation of planetary systems, with the water snowline being a favourable location for the growth of massive planetary cores. Here we present Atacama Large Millimeter/submillimeter Array data of the ringed protoplanetary disk orbiting the young star HL Tauri that show centrally peaked, bright emission arising from three distinct transitions of the main water isotopologue (). The spatially and spectrally resolved water content probes gas in a thermal range down to the water sublimation temperature. Our analysis implies a stringent lower limit of 3.7 Earth oceans of water vapour available within the inner 17 astronomical units of the system. We show that our observations are limited to probing the water content in the atmosphere of the disk, due to the high dust column density and absorption, and indicate that the main water isotopologue is the best tracer to spatially resolve water vapour in protoplanetary disks.
English
Astrophysical disks; Early solar system; Exoplanets
Settore FIS/05 - Astronomia e Astrofisica
Articolo
Esperti anonimi
Pubblicazione scientifica
   Unveiling the infancy of planetary systems (UNVEIL)
   UNVEIL
   EUROPEAN COMMISSION
   101076613

   Probing the Origin of Planetary Systems (POPS)
   POPS
   MINISTERO DELL'UNIVERSITA' E DELLA RICERCA
   2022YP5ACE_001
mag-2024
29-feb-2024
Nature Publishing Group
8
5
587
595
9
Pubblicato
Periodico con rilevanza internazionale
crossref
Aderisco
info:eu-repo/semantics/article
Resolved ALMA observations of water in the inner astronomical units of the HL Tau disk / S. Facchini, L. Testi, E. Humphreys, M. Vander Donckt, A. Isella, R. Wrzosek, A. Baudry, M.D. Gray, A.M.S. Richards, W. Vlemmmings. - In: NATURE ASTRONOMY. - ISSN 2397-3366. - 8:5(2024 May), pp. 587-595. [10.1038/s41550-024-02207-w]
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Prodotti della ricerca::01 - Articolo su periodico
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262
Article (author)
Periodico con Impact Factor
S. Facchini, L. Testi, E. Humphreys, M. Vander Donckt, A. Isella, R. Wrzosek, A. Baudry, M.D. Gray, A.M.S. Richards, W. Vlemmmings
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1033448
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