Massive outflows associated with ATLASGAL clumps
arXiv:1712.04599 · doi:10.3847/1538-4365/aaa297
Abstract
We have undertaken the largest survey for outflows within the Galactic Plane using simultaneously observed 13CO and C18O data. 325 out of a total of 919 ATLASGAL clumps have data suitable to identify outflows, and 225 (69+-3%) of them show high velocity outflows. The clumps with detected outflows show significantly higher clump masses (M_{clump}), bolometric luminosities (L_{bol}), luminosity-to-mass ratios (L_{bol}/M_{clump}) and peak H_2 column densities (N_{H_2}) compared to those without outflows. Outflow activity has been detected within the youngest quiescent clump (i.e.,70um weak) in this sample and we find that the outflow detection rate increases with M_{clump},L_{bol},L_{bol}/M_{clump} and N_{H_2},approaching 90% in some cases(uchii regions=93+-3%;masers=86+-4%;hchii regions=100%). This high detection rate suggests that outflows are ubiquitous phenomena of massive star formation. The mean outflow mass entrainment rate implies a mean accretion rate of ~10^{-4}M_\odot\,yr^{-1}, in full agreement with the accretion rate predicted by theoretical models of massive star formation. Outflow properties are tightly correlated with M_{clump},L_{bol} and L_{bol}/M_{clump},and show the strongest relation with the bolometric clump luminosity. This suggests that outflows might be driven by the most massive and luminous source within the clump. The correlations are similar for both low-mass and high-mass outflows over 7 orders of magnitude, indicating that they may share a similar outflow mechanism. Outflow energy is comparable to the turbulent energy within the clump, however, we find no evidence that outflows increase the level of clump turbulence as the clumps evolve. This implies that the origin of turbulence within clumps is fixed before the onset of star formation.
27 pages, 12 figures, 10 tables, accepted by ApJS
References in corpus (16)
- Radiation-Hydrodynamic Simulations of Collapse and Fragmentation in Massive Protostellar Cores
- ATLASGAL --- properties of a complete sample of Galactic clumps
- ATLASGAL --- towards a complete sample of massive star forming clumps
- The James Clerk Maxwell Telescope Legacy Survey of Nearby Star-forming Regions in the Gould Belt
- The Early Evolution of Massive Stars: Radio Recombination Line Spectra
- ATLASGAL --- Complete compact source catalogue: 280\degr\ 60\degr
- ATLASGAL-selected massive clumps in the inner Galaxy III. Dust Continuum Characterization of an Evolutionary Sample
- A SCUBA imaging survey of ultracompact HII regions: The environments of massive star formation
- The almost ubiquitous association of 6.7 GHz methanol masers with dust
- Methanol Maser Associated Outflows: Detection statistics and properties
- Massive molecular outflows associated with UCHII/HII regions
- Assessing molecular outflows and turbulence in the protostellar cluster Serpens South
- Massive 70 micron quiet clumps I: evidence of embedded low/intermediate-mass star formation activity
- Protostellar Outflow Evolution in Turbulent Environments
- 6.7GHz Methanol Maser Associated Outflows: An evolutionary sequence
- Occurrence Frequency of CO Outflows in Massive Protostellar Candidates
Cited by in corpus (42)
- Star Clusters Across Cosmic Time
- The dynamics and outcome of star formation with jets, radiation, winds, and supernovae in concert
- ATLASGAL -- Evolutionary trends in high-mass star formation
- Zooming in on Individual Star Formation: Low- and High-mass Stars
- The ALMA Survey of 70 Dark High-mass Clumps in Early Stages (ASHES). II: Molecular Outflows in the Extreme Early Stages of Protocluster Formation
- Feedback from OB stars on their parent cloud: Gas exhaustion rather than gas ejection
- An Ordered Envelope-disk Transition in the Massive Protostellar Source G339.88-1.26
- A population of hypercompact HII regions identified from young HII regions
- ATLASGAL --- Molecular fingerprints of a sample of massive star forming clumps
- Stellar models and isochrones from low-mass to massive stars including pre-main sequence phase with accretion
- The SEDIGISM survey: a search for molecular outflows
- The ALMA Survey of 70m Dark High-mass Clumps in Early Stages (ASHES) III. A Young Molecular Outflow Driven by a Decelerating Jet
- Physical and chemical structure of the Serpens filament -- fast formation and gravity-driven accretion
- 6.7 GHz variability characteristics of new periodic methanol maser sources
- An ALMA study of outflow parameters of protoclusters: outflow feedback to maintain the turbulence
- High-mass outflows identified from COHRS CO\,(3 - 2) Survey
- A global view on star formation: The GLOSTAR Galactic plane survey. IX. Radio Source Catalog III: 2<l<28, 36<l<40, 56<l<60 and |b|<1, VLA B-configuration
- CO Outflow Candidates Toward the W3/4/5 Complex I: The Sample and its Spatial Distribution
- ATLASGAL -- Star forming efficiencies and the Galactic star formation rate
- APEX CO observations towards the photodissociation region of RCW120
- Dependence of Molecular Cloud Samples on Angular Resolution, Sensitivity, and Algorithms
- Three isotopologues CO survey of Molecular Clouds in the CMa OB1 complex
- Infall and Outflow Towards High-mass Starless Clump Candidates
- Surveys of Clumps, Cores, and Condensations in the Cygnus X: II. Radio Properties of the Massive Dense Cores
- Effects of infall and outflow on massive star-forming regions
- EVN observations of 6.7 GHz methanol maser polarization in massive star-forming regions. V. Completion of the flux-limited sample
- High-Sensitivity Observations of Molecular Lines with the Arecibo Telescope
- Studying star-forming processes at core and clump scales: the case of the young stellar object G29.862-0.0044
- Studying a precessing jet of a massive young stellar object within a chemically rich region
- A Possible Chemical Clock in High-mass Star-forming Regions: N(HC3N)/N(N2H+)?
- Multifrequency study of HH 137 and HH 138: Discovering new knots and molecular outflows with Gemini and APEX
- Velocity-resolved high-J CO emission from massive star-forming clumps
- Dynamic Massive Star Formation: Radio Flux Variability in UCHII Regions
- Broad-velocity-width Molecular Features in the Galactic Plane
- Searching for Molecular Jets from High-Mass Protostars
- MeerKAT and ALMA view of the AGAL045.804-0.356 clump
- ATLASGAL-selected high-mass clumps in the inner Galaxy: XI. Morphology and kinematics of warm inner envelopes
- Unveiling the collision between molecular outflows: observational evidence and hydrodynamic simulations
- Revisiting G29.862-0.0044: a jet cavity disrupted by an outflow in a likely young stellar object wide binary system
- Search for High-Mass Protostellar Objects in Cold IRAS Sources
- Discs and outflows in the early phases of massive star formation: influence of magnetic fields and ambipolar diffusion
- SiO emission in the filamentary Infrared Dark Cloud G035.39-00.33: An ALMA view