2022
DOI: 10.1051/0004-6361/202142906
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AB Aur, a Rosetta stone for studies of planet formation

Abstract: Context. The sulfur abundance is poorly known in most environments. Yet, deriving the sulfur abundance is key to understanding the evolution of the chemistry from molecular clouds to planetary atmospheres. We present observations of H 2 S 1 10 − 1 01 at 168.763 GHz toward the Herbig Ae star AB Aur. Aims. We aim to study the abundance of sulfuretted species toward AB Aur and to constrain how different species and phases contribute to the sulfur budget. Methods. We present new NOrthern Extended Millimeter Array … Show more

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Cited by 13 publications
(8 citation statements)
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“…We assumed a gas-to-dust ratio of 40, no sulfur depletion ([S/H] = 1.5 ⇥ 10 −5 ), and C/O=0.7. The details of the model can be found in the original papers [8,15]. Our model results in an H 2 S column density of 3.5⇥10 13 cm −2 , in good agreement, given the uncertainties, with the value derived assuming LTE.…”
Section: Resolved Observations Of H 2 Ssupporting
confidence: 75%
See 1 more Smart Citation
“…We assumed a gas-to-dust ratio of 40, no sulfur depletion ([S/H] = 1.5 ⇥ 10 −5 ), and C/O=0.7. The details of the model can be found in the original papers [8,15]. Our model results in an H 2 S column density of 3.5⇥10 13 cm −2 , in good agreement, given the uncertainties, with the value derived assuming LTE.…”
Section: Resolved Observations Of H 2 Ssupporting
confidence: 75%
“…We observed the H 2 S 1 10 -1 01 transition with NOEMA (see the velocity integrated intensity map in Fig. 1 bottom right panel) with an angular resolution of 1.19" ⇥ 0.97" [15]. This is the second time that resolved observations of H 2 S towards a protoplanetary disk were performed after the observations toward GG Tau [16].…”
Section: Resolved Observations Of H 2 Smentioning
confidence: 87%
“…[4][5][6][7] For example, the estimated abundances of S-containing species in the outer layers of the photodissociation region in the Horsehead nebula are only ∼25% of the cosmic value 8 and orders of magnitude lower abundances have been suggested in cold molecular clouds. [9][10][11] This apparent depletion is explained by assuming that much of the (undetected) sulfur is locked up in solids, i.e. in dust grains and in icy mantles.…”
Section: Introductionmentioning
confidence: 99%
“…Planets are formed among the protoplanetary disks (PPDs) [1] while protoplanetary disks are formed from the molecular cloud core collapse. Protoplanetary disks are composed of gas and dust particles [2].…”
Section: Introductionmentioning
confidence: 99%