English

H$_2$S observations in young stellar disks in Taurus

Solar and Stellar Astrophysics 2021-08-11 v2 Earth and Planetary Astrophysics Astrophysics of Galaxies

Abstract

Context. Studying gas chemistry in protoplanetary disks is key to understanding the process of planet formation. Sulfur chemistry in particular is poorly understood in interstellar environments, and the location of the main reservoirs remains unknown. Protoplanetary disks in Taurus are ideal targets for studying the evolution of the composition of planet forming systems. Aims. We aim to elucidate the chemical origin of sulfur-bearing molecular emission in protoplanetary disks, with a special focus on H2_2S emission, and to identify candidate species that could become the main molecular sulfur reservoirs in protoplanetary systems. Methods. We used IRAM 30m observations of nine gas-rich young stellar objects (YSOs) in Taurus to perform a survey of sulfur-bearing and oxygen-bearing molecular species. In this paper we present our results for the CS 3-2 (ν0\nu_0 = 146.969 GHz), H2_2CO 211_{11}-110_{10} (ν0\nu_0 = 150.498 GHz), and H2_2S 110_{10}-101_{01} (ν0\nu_0 = 168,763 GHz) emission lines. Results. We detected H2_2S emission in four sources out of the nine observed, significantly increasing the number of detections toward YSOs. We also detected H2_2CO and CS in six out of the nine. We identify a tentative correlation between H2_2S 110_{10}-101_{01} and H2_2CO 211_{11}-110_{10} as well as a tentative correlation between H2_2S 110_{10}-101_{01} and H2_2O 818_{18}-707_{07}. By assuming local thermodynamical equilibrium, we computed column densities for the sources in the sample, with N(o-H2_2S) values ranging between 2.6×10122.6\times10^{12} cm2^{-2} and 1.5×10131.5\times10^{13} cm2^{-2}.

Keywords

Cite

@article{arxiv.2106.02430,
  title  = {H$_2$S observations in young stellar disks in Taurus},
  author = {P. Rivière-Marichalar and A. Fuente and R. Le Gal and A. M. Arabhavi and S. Cazaux and D. Navarro-Almaida and A. Ribas and I. Mendigutía and D. Barrado and B. Montesinos},
  journal= {arXiv preprint arXiv:2106.02430},
  year   = {2021}
}

Comments

13 pages, 6 figures, 6 tables

R2 v1 2026-06-24T02:50:13.425Z