JWST Observations of Young protoStars (JOYS): overview of program and early results
E.F. van Dishoeck, {\L}. Tychoniec, W. R. M. Rocha, K. Slavicinska, L. Francis, M. L. van Gelder, T. P. Ray, H. Beuther, A. Caratti o Garatti, N. G. C. Brunken, Y. Chen, R. Devaraj, V. C. Geers, C. Gieser, T. P. Greene, K. Justtanont, V. J. M. Le Gouellec, P. J. Kavanagh

TL;DR
This paper presents early results from JWST's JOYS program, revealing detailed physical and chemical processes in young protostars through high-resolution mid-infrared observations, including jet structures, molecular emissions, and ice features.
Contribution
It provides novel JWST observations of protostars, highlighting diverse features and chemical compositions, advancing understanding of early star formation stages.
Findings
Diverse atomic line emissions linked to local shock conditions.
Nested jet structures with ionized cores and H2 layers.
Detection of complex organic molecules and ice features, including HDO.
Abstract
The embedded phase is a crucial period in the development of a young star. Mid-IR observations, now possible with JWST with unprecedented sensitivity, spectral resolution and sharpness are key for probing many physical and chemical processes on sub-arcsecond scales. JOYS addresses a wide variety of questions, from protostellar accretion and the nature of primeval jets, winds and outflows, to the chemistry of gas and ice, and the characteristics of embedded disks. We introduce the program and show representative results. MIRI-MRS data of 17 low-mass and 6 high-mass protostars show a wide variety of features. Atomic line maps differ among refractory (e.g., Fe), semi-refractory (e.g., S) and volatile elements (e.g., Ne), linked to their different levels of depletion and local (shock) conditions. Nested, stratified jet structures consisting of an inner ionized core seen in [Fe II] with an…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
