XUE. JWST spectroscopy of externally irradiated disks around young intermediate-mass stars
arXiv:2505.06093 · doi:10.1051/0004-6361/202555456
Abstract
Most young stars and therefore planetary systems form in high-mass star forming regions and are exposed to ultraviolet radiation, affecting the protoplanetary disk. These regions are located at large distances and only now with JWST become accessible to study the inner disks surrounding young stars. We present the eXtreme UV Environments (XUE) program, which provides the first detailed characterization of the physical and chemical properties of the inner disks around young intermediate-mass stars exposed to external irradiation from nearby massive stars. We present high signal to noise MIRI-MRS spectroscopy of 12 disks located in three sub-clusters of the high-mass star-forming region NGC 6357. Based on their mid-infrared spectral energy distribution, we classify the XUE sources into Group I and II based on the Meeus scheme. We analyze their molecular emission features, and compare their spectral indices and 10 m silicate emission profiles to those of nearby Herbig and intermediate T Tauri disks. Despite being more massive, the XUE stars host disks with molecular richness comparable to isolated T Tauri systems. The 10 m silicate features show lower F/F ratios at a given F, but current uncertainties prevent conclusions about their inner disk properties. Most disks display water emission from the inner disk, suggesting that even in these extreme environments rocky planets can form in the presence of water. The absence of strong line fluxes and other irradiation signatures suggests that the XUE disks have been truncated by external UV photons. However, this truncation does not appear to significantly impact the chemical richness of their inner regions. These findings indicate that even in extreme environments, IMTT disks can retain the ingredients necessary for rocky planet formation.
14 pages, 8 appendix, 16 figures, 2 tables. Accepted version before language editing by A&A
References in corpus (50)
- The NumPy array: a structure for efficient numerical computation
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- The UKIRT Infrared Deep Sky Survey (UKIDSS)
- Gaia Early Data Release 3: Parallax bias versus magnitude, colour, and position
- The UKIDSS Galactic Plane Survey
- The Science Performance of JWST as Characterized in Commissioning
- An Analysis of the Shapes of Interstellar Extinction Curves. VII. Milky Way Spectrophotometric Optical-through-Ultraviolet Extinction and Its R-Dependence
- H2O and OH gas in the terrestrial planet-forming zones of protoplanetary disks
- One Relation for All Wavelengths: The Far-Ultraviolet to Mid-Infrared Milky Way Spectroscopic R(V) Dependent Dust Extinction Relationship
- Million-Degree Plasma Pervading the Extended Orion Nebula
- UV Radiation Fields Produced by Young Embedded Star Clusters
- MINDS. The detection of CO with JWST-MIRI indicates abundant CO in a protoplanetary disk
- Milky Way Mid-Infrared Spitzer Spectroscopic Extinction Curves: Continuum and Silicate Features
- Hints for icy pebble migration feeding an oxygen-rich chemistry in the inner planet-forming region of disks
- Water in the terrestrial planet-forming zone of the PDS 70 disk
- Age Gradients in the Stellar Populations of Massive Star Forming Regions Based on a New Stellar Chronometer
- Formation of the Methyl Cation by Photochemistry in a Protoplanetary Disk
- The Relationship between the Optical Depth of the 9.7 micron Silicate Absorption Feature and Infrared Differential Extinction in Dense Clouds
- SpeX near-infrared spectroscopic extinction curves in the Milky Way
- The depletion of water during dispersal of planet-forming disk regions
- Abundant hydrocarbons in the disk around a very-low-mass star
- Pismis 24-1: The Stellar Upper Mass Limit Preserved
- An X-ray Census of Young Stars in the Massive Southern Star-Forming Complex NGC 6357
- Core-Halo Age Gradients and Star Formation in the Orion Nebula and NGC~2024 Young Stellar Clusters
- MINDS. Abundant water and varying C/O across the disk of Sz 98 as seen by JWST/MIRI
- Scanning disk rings and winds in CO at 0.01-10 au: a high-resolution -band spectroscopy survey with IRTF-iSHELL
- Protoplanetary disk masses in NGC 2024: Evidence for two populations
- JWST/MIRI Spectroscopy of the Disk of the Young Eruptive Star EX Lup in Quiescence
- The mass and size of Herbig disks as seen by ALMA
- Planet formation via pebble accretion in externally photoevaporating discs
- Herbig Stars: A Quarter Century of Progress
- What happened before? -- The disks around the precursors of young Herbig Ae/Be stars
- MINDS. A multi-instrument investigation into the molecule-rich JWST-MIRI spectrum of the DF Tau binary system
- Astrophysical Parameters from Gaia DR2, 2MASS & AllWISE
- A high-resolution survey of protoplanetary disks in Lupus and the nature of compact disks
- Evolution of X-ray Activity in <25 Myr Old Pre-Main Sequence Stars
- MINDS. JWST-MIRI reveals a peculiar CO-rich chemistry in the drift-dominated disk CX Tau
- Young open clusters in the galactic star forming region NGC 6357
- Compact Disks: an explanation to faint CO emission in Lupus disks
- PDRs4All XI. Detection of infrared CH and CH rovibrational emission in the Orion Bar and disk d203-506: evidence of chemical pumping
- OH mid-infrared emission as a diagnostic of HO UV photodissociation. II. Application to interstellar PDRs
- PDRs4All. X. ALMA and JWST detection of neutral carbon in the externally irradiated disk d203-506: Undepleted gas-phase carbon
- Characterizing the X-ray Emission of Intermediate-Mass Pre-Main-Sequence Stars
- The young stellar content of the giant HII regions M8, G333.6-0.2, and NGC6357 with VLT/KMOS
- A tell-tale tracer for externally irradiated protoplanetary disks: comparing the [CI] 8727 A line and ALMA observations in proplyds
- How external photo-evaporation changes the chemical composition of the inner disc
- Intermediate mass T Tauri disk masses and a comparison to their Herbig disk descendants
- Spatially resolving polycyclic aromatic hydrocarbons in Herbig Ae disks with VISIR-NEAR at the VLT
- A complete Herbig disk mass survey in Orion
- Kinematic evidence of magnetospheric accretion for Herbig Ae stars with JWST NIRSpec