MINDS. JWST-MIRI Observations of a Spatially Resolved Atomic Jet and Polychromatic Molecular Wind Toward SY Cha
Abstract
The removal of angular momentum from protostellar systems drives accretion onto the central star and may drive the dispersal of the protoplanetary disk. Winds and jets can contribute to removing angular momentum from the disk, though the dominant process remain unclear. To date, observational studies of resolved disk winds have mostly targeted highly inclined disks. We report the detection of extended H2 and [Ne II] emission toward the young stellar object SY Cha with the JWST Mid-InfraRed Instrument Medium Resolution Spectrometer (MIRI-MRS). This is one of the first polychromatic detections of extended H2 toward a moderately inclined, i=51.1 degrees, Class II source. We measure the semi-opening angle of the H2 emission as well as build a rotation diagram to determine the H2 excitation temperature and abundance. We find a wide semi-opening angle, high temperature, and low column density for the H2 emission, all of which are characteristic of a disk wind. We derive a molecular wind mass loss rate of 3+-2e-9 Msun/yr, which is high compared to the previously derived stellar accretion rate of 6.6e-10 Msun/yr. This suggests either that the stellar accretion and the disk wind are driven by different mechanisms or that accretion onto the star is highly variable. These observations demonstrate MIRI-MRS's utility in expanding studies of resolved disk winds beyond edge-on sources.
Cite
@article{arxiv.2409.11176,
title = {MINDS. JWST-MIRI Observations of a Spatially Resolved Atomic Jet and Polychromatic Molecular Wind Toward SY Cha},
author = {Kamber R. Schwarz and Matthias Samland and Göran Olofsson and Thomas Henning and Andrew Sellek and Manuel Güdel and Benoît Tabone and Inga Kamp and Pierre-Olivier Lagage and Ewine F. van Dishoeck and Alessio Caratti o Garatti and Adrian M. Glauser and Tom P. Ray and Aditya M. Arabhavi and Valentin Christiaens and Riccardo Franceschi and Danny Gasman and Sierra L. Grant and Jayatee Kanwar and Till Kaeufer and Nicolas T. Kurtovic and Giulia Perotti and Milou Temmink and Marissa Vlasblom},
journal= {arXiv preprint arXiv:2409.11176},
year = {2025}
}
Comments
16 pages, 14 figures, 4 tables, accepted for publication in ApJ