English

JWST detections of amorphous and crystalline HDO ice toward massive protostars

Solar and Stellar Astrophysics 2024-07-31 v1 Astrophysics of Galaxies

Abstract

This work aims to utilize the increased sensitivity and resolution of the JWST to quantify the HDO/H2_{2}O ratio in ices toward young stellar objects (YSOs) and to determine if the HDO/H2_{2}O ratios measured in the gas phase toward massive YSOs (MYSOs) are representative of the ratios in their ice envelopes. Two protostars observed in the Investigating Protostellar Accretion (IPA) program using JWST NIRSpec were analyzed: HOPS 370, an intermediate-mass YSO (IMYSO), and IRAS 20126+4104, a MYSO. The HDO ice toward these sources was detected above the 3σ\sigma level and quantified via its 4.1 μ\mum band. The contributions from the CH3_{3}OH combination modes to the observed optical depth in this spectral region were constrained via the CH3_{3}OH 3.53 μ\mum band to ensure that the integrated optical depth of the HDO feature was not overestimated. H2_{2}O ice was quantified via its 3 μ\mum band. From these fits, ice HDO/H2_{2}O abundance ratios of 4.6±\pm1.8×\times103^{-3} and 2.6±\pm1.2×\times103^{-3} are obtained for HOPS 370 and IRAS 20126+4104, respectively. The simultaneous detections of both crystalline HDO and crystalline H2_{2}O corroborate the assignment of the observed feature at 4.1 μ\mum to HDO ice. The ice HDO/H2_{2}O ratios are similar to the highest reported gas HDO/H2_{2}O ratios measured toward MYSOs as well as the hot inner regions of isolated low-mass protostars, suggesting that at least some of the gas HDO/H2_{2}O ratios measured toward massive hot cores are representative of the HDO/H2_{2}O ratios in ices. The need for an H2_{2}O-rich CH3_{3}OH component in the CH3_{3}OH ice analysis supports recent experimental and observational results that indicate that some CH3_{3}OH ice may form prior to the CO freeze-out stage in H2_{2}O-rich ice layers.

Keywords

Cite

@article{arxiv.2404.15399,
  title  = {JWST detections of amorphous and crystalline HDO ice toward massive protostars},
  author = {Katerina Slavicinska and Ewine F. van Dishoeck and Łukasz Tychoniec and Pooneh Nazari and Adam E. Rubinstein and Robert Gutermuth and Himanshu Tyagi and Yuan Chen and Nashanty G. C. Brunken and Will R. M. Rocha and P. Manoj and Mayank Narang and S. Thomas Megeath and Yao-Lun Yang and Leslie W. Looney and John J. Tobin and Henrik Beuther and Tyler L. Bourke and Harold Linnartz and Samuel Federman and Dan M. Watson and Hendrik Linz},
  journal= {arXiv preprint arXiv:2404.15399},
  year   = {2024}
}

Comments

Accepted for publication in A&A. 23 pages, 17 figures, 10 tables