UV-irradiated outflows from low-mass protostars in Ophiuchus with JWST/MIRI
arXiv:2509.10256 · doi:10.1051/0004-6361/202554977
Abstract
The main accretion phase of protostars is characterized by the ejection of material in the form of jets/outflows. External UV irradiation can potentially have a significant impact on the excitation conditions within these outflows. High-resolution observations in the mid-infrared allow us to investigate the details of those energetic processes through the emission of shock-excited H . Our aim is to spatially resolve H and ionic/atomic emission within the outflows of low-mass protostars, and investigate its origin in connection to shocks influenced by external ultraviolet irradiation. We analyze spectral maps of 5 Class I protostars in the Ophiuchus molecular cloud from the James Webb Space Telescope (JWST) Medium Resolution Spectrometer (MIRI/MRS). Four out of five protostars show strong H, [\ion{Ne}{II}], and [\ion{Fe}{II}] emission associated with outflows/jets. Pure rotational H transitions from S(1) to S(8) are found and show two distinct temperature components on Boltzmann diagrams with rotational temperatures of 500-600 K and 1000-3000 K respectively. Both -type shocks propagating at high pre-shock densities (n10 cm) and -type shocks at low pre-shock densities (n10 cm) reproduce the observed line ratios. However, only -type shocks produce sufficiently high column densities of H, whereas predictions from a single -type shock reproduce the observed rotational temperatures of the gas better. A combination of various types of shocks could play a role in protostellar outflows as long as UV irradiation is included in the models. The origin of this radiation is likely internal, since no significant differences in the excitation conditions of outflows are seen at various locations in the cloud.
35 pages, 40 figures. Accepted for publication in A&A
References in corpus (34)
- JWST MIRI flight performance: The Medium-Resolution Spectrometer
- Dust masses of young disks: constraining the initial solid reservoir for planet formation
- The Gould's Belt Distances Survey (GOBELINS) I. Trigonometric parallax distances and depth of the Ophiuchus complex
- Water in star-forming regions (WISH): Physics and chemistry from clouds to disks as probed by Herschel spectroscopy
- A 3D Drizzle Algorithm for JWST and Practical Application to the MIRI Medium Resolution Spectrometer
- Spitzer observations of HH54 and HH7-11: mapping the H2 ortho-to-para ratio in shocked molecular gas
- The nature of the Class I population in Ophiuchus as revealed through gas and dust mapping
- Low velocity shocks: signatures of turbulent dissipation in diffuse irradiated gas
- APEX-CHAMP+ high-J CO observations of low-mass young stellar objects: IV. Mechanical and radiative feedback
- The CALYPSO IRAM-PdBI survey of jets from Class 0 protostars. Are jets ubiquitous in young stars ?
- Outflows, infall and evolution of a sample of embedded low-mass protostars. The William Herschel Line Legacy (WILL) survey
- A SCUBA survey of L1689 - The dog that didn't bark
- Models of irradiated molecular shocks
- Mapping warm molecular hydrogen with Spitzer's Infrared Array Camera (IRAC)
- Physical and chemical fingerprint of protostellar disc formation
- Shockingly low water abundances in Herschel / PACS observations of low-mass protostars in Perseus
- Shock excitation of H in the James Webb Space Telescope era
- JWST Observations of Young protoStars (JOYS): Linked accretion and ejection in a Class I protobinary system
- Origin of warm and hot gas emission from low-mass protostars: Herschel-HIFI observations of CO J=16-15. I. Line profiles, physical conditions, and H2O abundance
- JWST Peers into the Class I Protostar TMC1A: Atomic Jet and Spatially Resolved Dissociative Shock Region
- JWST Observations of Young protoStars (JOYS). HH 211: the textbook case of a protostellar jet and outflow
- Ionized carbon as a tracer of the assembly of interstellar clouds
- JWST study of the DG Tau B disk wind candidate: I -- Overview and Nested H/CO outflows
- Externally heated protostellar cores in the Ophiuchus star-forming region
- Self-generated ultraviolet radiation in molecular shock waves II. CH+ and the interpretation of emission from shock ensembles
- Lucky spectroscopy, an equivalent technique to Lucky Imaging: II. Spatially-resolved intermediate-resolution blue-violet spectroscopy of 19 close massive binaries using the William Herschel Telescope
- A CO (J=3-2) Outflow Survey of the Elias 29 Region
- The Asymmetric Bipolar Fe II Jet and H2 Outflow of TMC1A Resolved with JWST's NIRSpec IFU
- JOYS: The [D/H] abundance derived from protostellar outflows across the Galactic disk measured with JWST
- Connecting Galactic and extragalactic outflows: From the Cygnus-X cluster to active galaxies
- Physical conditions for dust grain alignment in Class 0 protostellar cores I. Observations of dust polarization and molecular irradiation tracers
- The Cygnus Allscale Survey of Chemistry and Dynamical Environments: CASCADE. II. A detailed kinematic analysis of the DR21 Main outflow
- Signatures of UV radiation in low-mass protostars I. Origin of HCN and CN emission in the Serpens Main region
- Mapping and characterizing magnetic fields in the Rho Ophiuchus-A molecular cloud with SOFIA/HAWC