First hydrodynamics simulations of radiation forces and photoionization feedback in massive star formation
arXiv:1804.10211 · doi:10.1051/0004-6361/201832638
Abstract
We present the first simulations of the formation and feedback of massive stars which account for radiation forces as well as photoionization feedback (along with protostellar outflows). In two different accretion scenarios modeled, we determine the relative strength of these feedback components and derive the size of the reservoir from which the forming stars gained their masses. We find that protostellar outflows alone limit the stellar mass growth only in an accretion scenario with a finite mass reservoir; when including accretion and ram pressure from large scales (> 0.1 pc), protostellar outflows do not limit stellar mass growth at all. Photoionization and HII regions dominate the feedback ladder only at later times and only on large scales. Specifically, photoionization yields a broadening of the bipolar outflow cavities and a reduction of the gravitational infall momentum by about 50 percent, but does not limit the stellar mass accretion. On the other hand, we find radiation forces restrain the gravitational infall toward the circumstellar disk, impact the gravito-centrifugal equilibrium at the outer edge of the disk, and eventually shut down stellar accretion completely. The most massive star formed in the simulations accreted 95 solar masses before disk destruction; this mass was drawn-in from an accretion reservoir of approximately 240 solar masses and 0.24 pc in radius. In the regime of very massive stars, the final mass of these stars is controlled by their own radiation force feedback.
22 pages, accepted for publication at A&A
References in corpus (29)
- Theory of Star Formation
- PLUTO: a Numerical Code for Computational Astrophysics
- Radiation-Hydrodynamic Simulations of Collapse and Fragmentation in Massive Protostellar Cores
- Primordial Star Formation under the Influence of Far Ultraviolet Radiation: 1540 Cosmological Halos and the Stellar Mass Distribution
- Circumventing the radiation pressure barrier in the formation of massive stars via disk accretion
- Before the first supernova: combined effects of HII regions and winds on molecular clouds
- Three-dimensional simulation of massive star formation in the disk accretion scenario
- Limiting Accretion onto Massive Stars by Fragmentation-Induced Starvation
- The Fragmentation of Magnetized, Massive Star-Forming Cores with Radiative Feedback
- On the existence of accretion-driven bursts in massive star formation
- Magnetohydronamic Evolution of HII Regions in Molecular Clouds: Simulation Methodology, Tests, and Uniform Media
- An Unstable Truth: How Massive Stars get their Mass
- Supersonic Gas Streams Enhance the Formation of Massive Black Holes in the Early Universe
- The SILCC project --- IV. Impact of dissociating and ionising radiation on the interstellar medium and Halpha emission as a tracer of the star formation rate
- Forming spectroscopic massive proto-binaries by disk fragmentation
- Numerical Simulations of Turbulent, Molecular Clouds Regulated by Radiation Feedback Forces I: Star Formation Rate and Efficiency
- Protostellar Outflows and Radiative Feedback from Massive Stars. II. Feedback, Star Formation Efficiency, and Outflow Broadening
- Protostellar Outflows and Radiative Feedback from Massive Stars
- Simulating radiative feedback and star cluster formation in GMCs: II. Mass dependence of cloud destruction and cluster properties
- Radiation-hydrodynamical simulations of massive star formation using Monte Carlo radiative transfer II. The formation of a 25 solar-mass star
- First Core Properties: From Low- to High-mass Star Formation
- On the effects of optically thick gas (disks) around massive stars
- Collective outflow from a small multiple stellar system
- Kinematics of a hot massive accretion disk candidate
- Numerical Simulations of Turbulent Molecular Clouds Regulated by Radiation Feedback Forces II: Radiation-Gas Interactions and Outflows
- An optical parsec-scale jet from a massive young star in the Large Magellanic Cloud
- Ultra Violet Escape Fractions from Giant Molecular Clouds During Early Cluster Formation
- The effect of radiation pressure on spatial distribution of dust inside HII regions
- Outflow-Confined HII regions. II. The Early Break-Out Phase
Cited by in corpus (91)
- The Origin of Massive Stars: The Inertial-Inflow Model
- The Role of Magnetic Fields in Protostellar Outflows and Star Formation
- Substructures in the Keplerian disc around the O-type (proto)star G17.64+0.16
- Formation and Evolution of Disks around Young Stellar Objects
- Chasing discs around O-type (proto)stars - ALMA evidence for an SiO disc and disc wind from G17.64+0.16
- Zooming in on Individual Star Formation: Low- and High-mass Stars
- Jets and outflows of massive protostars - From cloud collapse to jet launching and cloud dispersal
- The Geometry and Dynamical Role of Stellar Wind Bubbles in Photoionised HII Regions
- Chemical complexity in high-mass star formation: An observational and modeling case study of the AFGL 2591 VLA 3 hot core
- Population synthesis of exocometary gas around A stars
- Feedback from OB stars on their parent cloud: Gas exhaustion rather than gas ejection
- Trapping of HII regions in Population III star formation
- Understanding planet formation using microgravity experiments
- Massive Star Formation via the Collapse of Subvirial and Virialized Turbulent Massive Cores
- When H II Regions are Complicated: Considering Perturbations from Winds, Radiation Pressure, and Other Effects
- Salt, Hot Water, and Silicon Compounds Tracing Massive Twin Disks
- Disk Kinematics and Stability in High-Mass Star Formation: Linking Simulations and Observations
- Gaseous dynamical friction under radiative feedback: do intermediate-mass black holes speed up or down?
- A new hybrid radiative transfer method for massive star formation
- On the turbulence driving mode of expanding HII regions
- Super-Eddington accretion of dusty gas onto seed black holes: metallicity-dependent efficiency of mass growth
- Gravity and rotation drag the magnetic field in high-mass star formation
- A dearth of young and bright massive stars in the Small Magellanic Cloud
- Dynamical Accretion Flows -- ALMAGAL: Flows along filamentary structures in high-mass star-forming clusters
- Collapse of turbulent massive cores with ambipolar diffusion and hybrid radiative transfer II. Outflows
- Makemake + Sedna: A Continuum Radiation Transport and Photoionization Framework for Astrophysical Newtonian Fluid Dynamics
- Modeling the accretion disk around the high-mass protostar GGD 27-MM1
- A Massive Star is Born: How Feedback from Stellar Winds, Radiation Pressure, and Collimated Outflows Limits Accretion onto Massive Stars
- Formation of massive stars under protostellar radiation feedback: Very metal-poor stars
- Super-Eddington mass growth of intermediate-mass black holes embedded in dusty circumnuclear disks
- Digging into the Interior of Hot Cores with ALMA (DIHCA). II. Exploring the Inner Binary (Multiple) System Embedded in G335 MM1 ALMA1
- Kinematics and stability of high-mass protostellar disk candidates at sub-arcsecond resolution -- Insights from the IRAM NOEMA large program CORE
- Modeling disks and magnetic outflows around a forming massive star: I. Investigating the two layer-structure of the accretion disk
- Modeling disks and magnetic outflows around a forming massive star: II. Dynamics of jets from massive protostars
- Fragmentation, rotation and outflows in the high-mass star-forming region IRAS 23033+5951. A case study of the IRAM NOEMA large program CORE
- ALMA observations of the Extended Green Object G19.010.03: I. A Keplerian disc in a massive protostellar system
- A Detailed View of the Circumstellar Environment and Disk of the Forming O-star AFGL 4176
- A 10- YSO with a Keplerian disk and a nonthermal radio jet
- Evidence of Core Growth in the Dragon Infrared Dark Cloud: A Path for Massive Star Formation
- Physical and chemical complexity in high-mass star-forming regions with ALMA. I. Overview and evolutionary trends of physical properties
- Massive Protostars in a Protocluster -- A Multi-Scale ALMA View of G35.20-0.74N
- Fragmentation in the massive G31.41+0.31 protocluster
- A photoionized accretion disk around a young high-mass star
- The first interferometric survey in the K-band of massive YSOs. On the hot dust, ionised gas, and binarity at au scales
- Line-driven ablation of circumstellar discs: IV. The role of disc ablation in massive star formation and its contribution to the stellar upper mass limit
- Disk fragmentation in high-mass star formation. High-resolution observations towards AFGL 2591-VLA 3
- The sharp ALMA view of infall and outflow in the massive protocluster G31.41+0.31
- The formation of high-mass binary star systems
- Bottling the Champagne: Dynamics and Radiation Trapping of Wind-Driven Bubbles around Massive Stars
- Importance of source structure on complex organics emission III. Effect of disks around massive protostars
- Mixing is easy: New insights for cosmochemical evolution from pre-stellar core collapse
- Disk wind feedback from high-mass protostars
- Physical conditions in the warped accretion disk of a massive star. 349 GHz ALMA observations of G023.0100.41
- The Energy and Dynamics of Trapped Radiative Feedback with Stellar Winds
- The SOMA Radio Survey. I. Comprehensive SEDs Of High-Mass Protostars From Infrared To Radio And The Emergence Of Ionization Feedback
- Gravitational Fragmentation of Extremely Metal-poor Circumstellar Discs
- The ionized heart of a molecular disk. ALMA observations of the hyper-compact HII region G24.78+0.08 A1
- The Dynamic Proto-atmospheres around Low-Mass Planets with Eccentric Orbits
- The link between infall location, early disc size, and the fraction of self-gravitationally fragmenting discs
- Massive star formation via torus accretion: the effect of photoionization feedback
- Resolving the MYSO binaries PDS 27 and PDS 37 with VLTI/PIONIER
- VLT/X-shooter spectroscopy of massive young stellar objects in the 30 Doradus region of the Large Magellanic Cloud
- Necessary conditions for the formation of filaments and star clusters in the cold neutral medium
- Bringing Stellar Evolution & Feedback Together: Summary of proposals from the Lorentz Center Workshop, 2022
- Multi-wavelength modelling of the circumstellar environment of the massive proto-star AFGL 2591 VLA 3
- Driving Conditions of Protostellar Outflows in Different Star-Forming Environments
- Tree-based solvers for adaptive mesh refinement code FLASH -- III: a novel scheme for radiation pressure on dust and gas and radiative transfer from diffuse sources
- Discrimination of heavy elements originating from Pop III stars in z = 3 intergalactic medium
- The physical and chemical structure of high-mass star-forming regions. Unraveling chemical complexity with the NOEMA large program "CORE"
- Modelling of ionising feedback with Smoothed Particle Hydrodynamics and Monte Carlo Radiative Transfer on a Voronoi grid
- Massive extended streamers feed high-mass young stars
- Disk Wind Feedback from High-mass Protostars. II. The Evolutionary Sequence
- Digging into the Interior of Hot Cores with ALMA (DIHCA). VII. Disk candidates around high-mass stars and evidence of anisotropic infall
- Protostellar spin-up and fast rotator formation through binary star formation
- VVV-WIT-01: highly obscured classical nova or protostellar collision?
- Radiation hydrodynamic simulations of massive star formation via gravitationally trapped HII regions - Spherically symmetric ionised accretion flows
- Testing the stability of supersonic ionized Bondi accretion flows with radiation hydrodynamics
- An ALMA view of the Galactic super star cluster RCW38 at 270-AU resolution
- Excited Hydroxyl Outflow in the High-Mass Star-Forming Region G34.26+0.15
- An Imaging and Spectroscopic Exploration of the Dusty Compact Obscured Nucleus Galaxy Zw~049.057
- Evolutionary models for the Very Massive Stars in the R136 cluster of 30 Doradus in the Large Magellanic Cloud
- The Impact of Silicate Grain Coagulation on Millimeter Emission from Massive Protostellar Disks
- An expanding ring of the hypercompact HII region W49N:A2
- First spatially resolved Na I and He I transitions towards an MYSO. Finding new tracers for the gaseous star/disc interface
- Numerical Methods for Simulating Star Formation
- Surveys of clumps, cores, and condensations in Cygnus-X: Searching for Keplerian disks on the scale of 500 au
- Formation of massive multiple-star systems: early migration and mergers
- Exploring the 100 au Scale Structure of the Protobinary System NGC 2264 CMM3 with ALMA
- Discs and outflows in the early phases of massive star formation: influence of magnetic fields and ambipolar diffusion
- Stability of an Ionization Front in Bondi Accretion
- HOTDISK. Finding Massive Protostellar Disks with Water and Refractory Molecular Species