An Unstable Truth: How Massive Stars get their Mass
arXiv:1607.03117 · doi:10.1093/mnras/stw2153
Abstract
The pressure exerted by massive stars' radiation fields is an important mechanism regulating their formation. Detailed simulation of massive star formation therefore requires an accurate treatment of radiation. However, all published simulations have either used a diffusion approximation of limited validity; have only been able to simulate a single star fixed in space, thereby suppressing potentially-important instabilities; or did not provide adequate resolution at locations where instabilities may develop. To remedy this we have developed a new, highly accurate radiation algorithm that properly treats the absorption of the direct radiation field from stars and the re-emission and processing by interstellar dust. We use our new tool to perform three-dimensional radiation-hydrodynamic simulations of the collapse of massive pre-stellar cores with laminar and turbulent initial conditions and properly resolve regions where we expect instabilities to grow. We find that mass is channeled to the stellar system via gravitational and Rayleigh-Taylor (RT) instabilities, in agreement with previous results using stars capable of moving, but in disagreement with methods where the star is held fixed or with simulations that do not adequately resolve the development of RT instabilities. For laminar initial conditions, proper treatment of the direct radiation field produces later onset of instability, but does not suppress it entirely provided the edges of radiation-dominated bubbles are adequately resolved. Instabilities arise immediately for turbulent pre-stellar cores because the initial turbulence seeds the instabilities. Our results suggest that RT features are significant and should be present around accreting massive stars throughout their formation.
23 pages, 22 figures, 2 tables. Submitted to MNRAS. Simulation movies can be found here: https://anna-rosen.com/movies/
References in corpus (14)
- Southern Massive Stars at High Angular Resolution: Observational Campaign and Companion Detection
- The R136 star cluster hosts several stars whose individual masses greatly exceed the accepted 150 Msun stellar mass limit
- Modeling Collapse and Accretion in Turbulent Gas Clouds: Implementation and Comparison of Sink Particles in AMR and SPH
- The Effects of Radiative Transfer on Low-Mass Star Formation
- Three-dimensional simulation of massive star formation in the disk accretion scenario
- A scheme for radiation pressure and photon diffusion with the M1 closure in RAMSES-RT
- The Fragmentation of Magnetized, Massive Star-Forming Cores with Radiative Feedback
- Equations and Algorithms for Mixed Frame Flux-Limited Diffusion Radiation Hydrodynamics
- Radiation Feedback in ULIRGS: Are Photons Movers and Shakers?
- Interferometric multi-wavelength (sub)millimeter continuum study of the young high-mass protocluster IRAS05358+3543
- Protostellar Outflows and Radiative Feedback from Massive Stars
- Hybrid Adaptive Ray-Moment Method (HARM): A Highly Parallel Method for Radiation Hydrodynamics on Adaptive Grids
- A general hybrid radiation transport scheme for star formation simulations on an adaptive grid
- A multigroup diffusion solver using pseudo transient continuation for a radiation-hydrodynamic code with patch-based AMR
Cited by in corpus (36)
- Grackle: a Chemistry and Cooling Library for Astrophysics
- The dynamics and outcome of star formation with jets, radiation, winds, and supernovae in concert
- The Physics of Star Cluster Formation and Evolution
- The Role of Magnetic Fields in Protostellar Outflows and Star Formation
- Forming spectroscopic massive proto-binaries by disk fragmentation
- Substructures in the Keplerian disc around the O-type (proto)star G17.64+0.16
- Formation and Evolution of Disks around Young Stellar Objects
- The Impact of Feedback During Massive Star Formation by Core Accretion
- Thermal Feedback in the high-mass star and cluster forming region W51
- Zooming in on Individual Star Formation: Low- and High-mass Stars
- The Role of Outflows, Radiation Pressure, and Magnetic Fields in Massive Star Formation
- The Origin of the Stellar Mass Distribution and Multiplicity
- Collapse of turbulent massive cores with ambipolar diffusion and hybrid radiative transfer I. Accretion and multiplicity
- Trapping of HII regions in Population III star formation
- Radiation-hydrodynamical simulations of massive star formation using Monte Carlo radiative transfer II. The formation of a 25 solar-mass star
- Hybrid Adaptive Ray-Moment Method (HARM): A Highly Parallel Method for Radiation Hydrodynamics on Adaptive Grids
- A Statistical Spectropolarimetric Study of Herbig Ae/Be Stars
- Salt, Hot Water, and Silicon Compounds Tracing Massive Twin Disks
- Magnetic fields in the formation of the first stars.--II Results
- Disk Kinematics and Stability in High-Mass Star Formation: Linking Simulations and Observations
- The VLA/ALMA Nascent Disk and Multiplicity (VANDAM) Survey of Orion Protostars I. Identifying and Characterizing the Protostellar Content of the OMC2-FIR4 and OMC2-FIR3 Regions
- Parameter study for the burst mode of accretion in massive star formation
- A pilot survey of the binarity of Massive Young Stellar Objects with band adaptive optics
- Medium resolution near-infrared spectroscopy of Massive Young Stellar Objects
- On the episodic excursions of massive protostars in the Hertzsprung-Russell diagram
- Upper stellar mass limit by radiative feedback at low-metallicities: metallicity and accretion rate dependence
- VETTAM: A scheme for radiation hydrodynamics with adaptive mesh refinement using the variable Eddington tensor method
- Continuity of accretion from clumps to Class 0 high-mass protostars in SDC335
- ALMA observations of the Extended Green Object G19.010.03: I. A Keplerian disc in a massive protostellar system
- The role of magnetic fields in the formation of multiple massive stars
- Resolving the MYSO binaries PDS 27 and PDS 37 with VLTI/PIONIER
- Disk fragmentation around a massive protostar: a comparison of two three-dimensional codes
- ATLASGAL-selected high-mass clumps in the inner Galaxy. VII. Characterisation of mid-J CO emission
- ALMA Datacubes and Continuum Maps of the Irradiated Western Wall in Carina
- Surveys of clumps, cores, and condensations in Cygnus-X: Searching for Keplerian disks on the scale of 500 au
- Numerical Methods for Simulating Star Formation