Outflow-Confined H II Regions. I. First Signposts of Massive Star Formation
arXiv:1509.06754 · doi:10.3847/0004-637X/818/1/52
Abstract
We present an evolutionary sequence of models of the photoionized disk-wind outflow around forming massive stars based on the Core Accretion model. The outflow is expected to be the first structure to be ionized by the protostar and can confine the expansion of the HII region, especially in lateral directions in the plane of the accretion disk. The ionizing luminosity increases as Kelvin-Helmholz contraction proceeds, and the HII region is formed when the stellar mass reaches ~10-20Msun depending on the initial cloud core properties. Although some part of outer disk surface remains neutral due to shielding by the inner disk and the disk wind, almost the whole of the outflow is ionized in 1e3-1e4 yr after initial HII region formation. Having calculated the extent and temperature structure of the HII region within the immediate protostellar environment, we then make predictions for the strength of its free-free continuum and recombination line emission. The free-free radio emission from the ionized outflow has a flux density of ~(20-200)x(nu/10GHz)^p mJy for a source at a distance of 1 kpc with a spectral index p~0.4-0.7, and the apparent size is typically ~500AU at 10GHz. The H40alpha line profile has a width of about 100km/s. These properties of our model are consistent with observed radio winds and jets around forming massive protostars.
23 pages, 19 figures, accepted for publication in ApJ
References in corpus (15)
- A Grid of NLTE Line-Blanketed Model Atmospheres of Early B-type Stars
- New Grids of ATLAS9 Model Atmospheres
- UBVJHK synthetic photometry of Galactic O stars
- Circumventing the radiation pressure barrier in the formation of massive stars via disk accretion
- The Formation of the First Stars II. Radiative Feedback Processes and Implications for the Initial Mass Function
- Three-dimensional simulation of massive star formation in the disk accretion scenario
- Limiting Accretion onto Massive Stars by Fragmentation-Induced Starvation
- A Magnetized Jet from a Massive Protostar
- Global Models for the Evolution of Embedded, Accreting Protostellar Disks
- The ALMA view of the protostellar system HH212 - The wind, the cavity, and the disk
- The Collimated Jet Source in IRAS 16547-4247: Time Variation, Possible Precession, and Upper Limits to the Proper Motions Along the Jet Axis
- Gamma-ray emission from massive young stellar objects
- Search for ionized jets towards high-mass young stellar objects
- Time Variation in G24.78+0.08 A1: Evidence for an Accreting Hypercompact H II Region?
- Observing the onset of outflow collimation in a massive protostar
Cited by in corpus (56)
- Radio Jets from Young Stellar Objects
- First hydrodynamics simulations of radiation forces and photoionization feedback in massive star formation
- Weak and Compact Radio Emission in Early High-Mass Star Forming Regions: I. VLA Observations
- The Impact of Feedback During Massive Star Formation by Core Accretion
- Toward gas exhaustion in the W51 high-mass protoclusters
- Multi-directional mass-accretion and collimated outflows in W51
- Radio outburst from a massive (proto)star. When accretion turns into ejection
- Zooming in on Individual Star Formation: Low- and High-mass Stars
- The SOFIA Massive (SOMA) Star Formation Survey. I. Overview and First Results
- Radiation Transfer of Models of Massive Star Formation. IV. The Model Grid and Spectral Energy Distribution Fitting
- Fragmentation and disk formation in high-mass star formation: The ALMA view of G351.77-0.54 at 0.06" resolution
- Synthetic observations of star formation and the interstellar medium
- A search for hypercompact HII regions in the Galactic Plane
- Salt, Hot Water, and Silicon Compounds Tracing Massive Twin Disks
- Protostellar Outflows at the EarliesT Stages (POETS). I. Radio thermal jets at high resolution nearby HO maser sources
- Protostellar Outflows at the EarliesT Stages (POETS). II. A possible radio synchrotron jet associated with the EGO G035.02+0.35
- Weak and Compact Radio Emission in Early High-Mass Star Forming Regions: II. The Nature of the Radio Sources
- -band integral field spectroscopy and optical spectroscopy of massive young stellar objects in the Small Magellanic Cloud
- Dynamics of a Massive Binary at Birth
- Tracing jet emission at the base of a high-mass YSO. First AMBER/VLTI observations of the Brγemission in IRAS 13481-6124
- The Impact of Feedback in Massive Star Formation. II. Lower Star Formation Efficiency at Lower Metallicity
- A Protostellar Jet Emanating from a Hypercompact HII Region
- Discovery of a Photoionized Bipolar Outflow towards the Massive Protostar G45.47+0.05
- Massive Protostars in a Protocluster -- A Multi-Scale ALMA View of G35.20-0.74N
- A binary system in the S cluster close to the supermassive black hole Sagittarius A*
- Recombination Lines and Molecular Gas from Hypercompact HII regions in W51 A
- NGC7538 IRS1 -- an O star driving an ionized jet and giant N-S outflow
- Time-Variable Radio Recombination Line Emission in W49A
- SiO Outflows as Tracers of Massive Star Formation in Infrared Dark Clouds
- The SOMA Radio Survey. I. Comprehensive SEDs Of High-Mass Protostars From Infrared To Radio And The Emergence Of Ionization Feedback
- Momentum-driven outflow emission from an O-type YSO: Comparing the radio jet with the molecular outflow
- Outflow-Confined HII regions. II. The Early Break-Out Phase
- The ionized heart of a molecular disk. ALMA observations of the hyper-compact HII region G24.78+0.08 A1
- Ionised gas kinematics in bipolar H II regions
- ALMA-IMF XVII -- Census and lifetime of high-mass prestellar cores in 14 massive protoclusters
- Isolated Massive Star Formation in G28.20-0.05
- X3: a high-mass Young Stellar Object close to the supermassive black hole Sgr~A*
- Core to ultracompact HII region evolution in the W49A massive protocluster
- Probing the initial conditions of high-mass star formation. III. Fragmentation and triggered star formation
- Surveys of Clumps, Cores, and Condensations in the Cygnus X: II. Radio Properties of the Massive Dense Cores
- Vibrationally-excited Lines of HCN Associated with the Molecular Disk around the G24.78+0.08 A1 Hyper-compact H Region
- VLA Observations of 9 Extended Green Objects in the Milky Way: Ubiquitous Weak, Compact Continuum Emission, and Multi-Epoch Emission from CHOH, HO, and NH Masers
- Candidate Young Stellar Objects in the S-cluster: The Kinematic Analysis of a Sub-population of the Low-mass G-objects close to Sgr A*
- Hot Molecular Core Candidates in the Galactic Center 50 km/s Molecular Cloud
- Generation of high circular polarization of interstellar Lyman radiation triggering biological homochirality
- Comparison of Low-Mass and High-Mass Star Formation
- Excited Hydroxyl Outflow in the High-Mass Star-Forming Region G34.26+0.15
- W49N MCN-a: a disk accreting massive protostar embedded in an early-phase hot molecular core
- An expanding ring of the hypercompact HII region W49N:A2
- ngVLA Synthetic Observations of Ionized Gas in Massive Protostars
- The SOFIA Massive (SOMA) Star Formation Q-band Follow-up. II. Hydrogen Recombination Lines Toward High-Mass Protostars
- Fire from Ice - Massive Star Birth from Infrared Dark Clouds
- Dust and Gas environment of the young embedded cluster IRAS 18511+0146
- High-resolution radio observations of massive protostars in the SARAO MeerKAT Galactic Plane Survey
- Interstellar medium and star formation studies with the Square Kilometre Array
- An Eccentric Massive Protobinary Assembled via a Core-merger Parabolic Encounter