Unlocking accretion rate diagnostics for high-mass protostars using JWST/MIRI HI lines
arXiv:2603.23180 · doi:10.1051/0004-6361/202558585
Abstract
While many aspects of high-mass star formation have been investigated, the accretion onto the central protostars is one of the most fundamental but less explored physical properties. JWST/MIRI offers a unique opportunity to explore tracers of accretion at less-extincted wavelengths (5 to 27 um) than those studied so far. We probe the MIRI (MRS/IFU) capability to detect and resolve atomic Hydrogen (HI) emission lines in such embedded objects, to subsequently estimate accretion luminosities (Lacc) and accretion rates (Macc) for the first time in a sample of high-mass star forming regions at different evolutionary stages. We use dereddened HI line luminosities as tracers of accretion by applying existing line-to-accretion-luminosity relations (Lacc-calibrations). As they were originally established for low-mass Class II objects, we assess their applicability on our sample prior to estimating Macc. The infrared continuum reveals, at much higher spatial resolution than before, the location of new protostars, toward which we detect a handful of HI lines. While a few lines are secure detections, many are tentative. The most commonly detected line is HI 7-6, followed by HI 8-6 and HI 6-5. Assuming that their line fluxes are dominated by accretion, we find that two of the three existing Lacc-calibrations predict excessively high Lacc that largely exceed the corresponding L_bol, and that the third Lacc-calibration still overpredicts Lacc for some sources. Considering the given uncertainties, estimated accretion rates are only tentative. This work demonstrates the great potential of JWST/MIRI to probe HI line emission originated in the innermost regions of high-mass protostars, setting the ground floor for further investigations into accretion. While this project had the ambitious goal of robustly quantifying Macc, we have shed light on what outstanding methodological challenges remain.
21 pages, 14 figures. Accepted for publication in A&A
References in corpus (45)
- X-Shooter spectroscopy of young stellar objects: IV -- Accretion in low-mass stars and sub-stellar objects in Lupus
- ATLASGAL --- properties of a complete sample of Galactic clumps
- Young Stellar Objects in the Gould Belt
- Magnetospheric accretion-ejection processes in the classical T Tauri star AA
- Evolution of Massive Protostars via Disk Accretion
- The Herschel Orion Protostar Survey: Spectral Energy Distributions and Fits Using a Grid of Protostellar Models
- Fragmentation of Molecular Clumps and Formation of Protocluster
- X-shooter spectroscopy of young stellar objects: I - Mass accretion rates of low-mass T Tauri stars in σOrionis
- Observational m Interstellar Extinction Curves Toward Star-Forming Regions Derived from Spitzer IRS Spectra
- Early Planet Formation in Embedded Disks (eDisk). I. Overview of the Program and First Results
- Trigonometric Parallaxes of Massive Star Forming Regions: VIII. G12.89+0.49, G15.03-0.68 (M17) and G27.36-0.16
- Measuring Protoplanetary Disk Accretion with H I Pf-beta
- The accretion rates and mechanisms of Herbig Ae/Be stars
- Origins of the H, He I, and Ca II Line Emission in Classical T Tauri Stars
- Gravity Driven Magnetic Field at ~1000 au Scales in High-mass Star Formation
- ATLASGAL-selected massive clumps in the inner Galaxy, II: Characterisation of different evolutionary stages and their SiO emission
- Spectrally resolved pure rotational lines of water in protoplanetary disks
- NH3 Observations of the Infrared Dark Cloud G28.34+0.06
- Probing stellar accretion with mid-infrared hydrogen lines
- An Ordered Bipolar Outflow from a Massive Early-Stage Core
- Accelerating infall and rotational spin-up in the hot molecular core G31.41+0.31
- Infrared Spectroscopic Survey of the Quiescent Medium of Nearby Clouds: I. Ice Formation and Grain Growth in Lupus
- OH mid-infrared emission as a diagnostic of HO UV photodissociation. I. Model and application to the HH 211 shock
- SMA outflow/disk studies in the massive star-forming region IRAS18089-1732
- Massive and low-mass protostars in massive "starless" cores
- In Search of Circumstellar Disks Around Young Massive Stars
- Widespread Molecular Outflows in the Infrared Dark Cloud G28.37+0.07: Indications of Orthogonal Outflow-Filament Alignment
- JOYS: JWST Observations of Young protoStars: Outflows and accretion in the high-mass star-forming region IRAS23385+605
- Outflow detection in a 70 m dark high-mass core
- A Statistical Spectropolarimetric Study of Herbig Ae/Be Stars
- Are Infrared Dark Clouds Really Quiescent?
- JWST Observations of Young protoStars (JOYS): overview of program and early results
- Interpreting Near Infrared Hydrogen Line Ratios in T Tauri Stars
- JWST Observations of Young protoStars (JOYS). Overview of gaseous molecular emission and absorption in low-mass protostars
- Extension of HOPS Out to 500 ParSecs (eHOPS). I. Identification and Modeling of Protostars in the Aquila Molecular Clouds
- Kinematics and stability of high-mass protostellar disk candidates at sub-arcsecond resolution -- Insights from the IRAM NOEMA large program CORE
- The pre-ZAMS nature of Mol160/IRAS23385+6053 confirmed by Spitzer
- Tracing Accretion onto Herbig Ae/Be Stars Using the Brγ Line
- IRAS23385+6053: An embedded massive cluster in the making
- JOYS: Disentangling the warm and cold material in the high-mass IRAS 23385+6053 cluster
- PROJECT-J: the shocking H2 outflow from HH46
- Externally irradiated young stars in NGC 3603. A JWST NIRSpec catalogue of pre-main-sequence stars in a massive star formation region
- Turn up the light: Radiative efficiency of protostars at birth
- Improving Accretion Diagnostics for Young Stellar Objects with Mid-infrared Hydrogen lines from JWST/MIRI
- JOYS: Linking the molecular ice and gas-phase composition towards the high-mass hot core IRAS 18089-1732