Radiation pressure driving of a dusty atmosphere
arXiv:1506.05121 · doi:10.1093/mnras/stv1707
Abstract
Radiation pressure can be dynamically important in star-forming environments such as ultra-luminous infrared and submillimeter galaxies. Whether and how radiation drives turbulence and bulk outflows in star formation sites is still unclear. The uncertainty in part reflects the limitations of direct numerical schemes that are currently used to simulate radiation transfer and radiation-gas coupling. An idealized setup in which radiation is introduced at the base of a dusty atmosphere in a gravitational field has recently become the standard test for radiation-hydrodynamics methods in the context of star formation. To a series of treatments featuring the flux-limited-diffusion approximation as well as a short-characteristics tracing and M1 closure for the variable Eddington tensor approximation, we here add another treatment that is based on the Implicit Monte Carlo radiation transfer scheme. Consistent with all previous treatments, the atmosphere undergoes Rayleigh-Taylor instability and readjusts to a near-Eddington-limited state. We detect late-time net acceleration in which the turbulent velocity dispersion matches that reported previously with the short-characteristics-based radiation transport closure, the most accurate of the three preceding treatments. Our technical result demonstrates the importance of accurate radiation transfer in simulations of radiative feedback.
13 pages, 11 figures, accepted for publication in MNRAS
References in corpus (13)
- A Dust-Obscured Massive Maximum-Starburst Galaxy at a Redshift of 6.34
- The Dynamics of Radiation Pressure-Dominated HII Regions
- Circumventing the radiation pressure barrier in the formation of massive stars via disk accretion
- A scheme for radiation pressure and photon diffusion with the M1 closure in RAMSES-RT
- Dynamics of Dusty Radiation Pressure Driven Shells and Clouds: Fast Outflows from Galaxies, Star Clusters, Massive Stars, and AGN
- The Birth of a Galaxy. II. The Role of Radiation Pressure
- Equations and Algorithms for Mixed Frame Flux-Limited Diffusion Radiation Hydrodynamics
- Radiation Feedback in ULIRGS: Are Photons Movers and Shakers?
- Monte Carlo Radiation Hydrodynamics with Implicit Methods
- Stellar feedback as the origin of an extended molecular outflow in a starburst galaxy
- Protostellar Outflows and Radiative Feedback from Massive Stars
- Radiation-hydrodynamical simulations of massive star formation using Monte Carlo radiative transfer: I. Algorithms and numerical methods
- On the effects of optically thick gas (disks) around massive stars
Cited by in corpus (44)
- Star Clusters Across Cosmic Time
- Modules for Experiments in Stellar Astrophysics (MESA): Time-Dependent Convection, Energy Conservation, Automatic Differentiation, and Infrastructure
- Cool Outflows in Galaxies and their Implications
- When Feedback Fails: The Scaling and Saturation of Star Formation Efficiency
- Is Turbulence in the Interstellar Medium Driven by Feedback or Gravity? An Observational Test
- Local Radiation Hydrodynamic Simulations of Massive Star Envelopes at the Iron Opacity Peak
- An Unstable Truth: How Massive Stars get their Mass
- Quenching star formation with quasar outflows launched by trapped IR radiation
- Radiative Stellar Feedback in Galaxy Formation: Methods and Physics
- Understanding the escape of LyC and Ly photons from turbulent clouds
- A Dynamical Model for Gas Flows, Star Formation, and Nuclear Winds in Galactic Centres
- Driving gas shells with radiation pressure on dust in radiation-hydrodynamic simulations
- Outflows Driven by Quasars in High-Redshift Galaxies with Radiation Hydrodynamics
- Magnetar-Powered Supernovae in Two Dimensions. I. Superluminous Supernovae
- The energetics of AGN radiation pressure-driven outflows
- Lyman-alpha radiation hydrodynamics of galactic winds before cosmic reionization
- Radiation-hydrodynamical simulations of massive star formation using Monte Carlo radiative transfer II. The formation of a 25 solar-mass star
- The picture of BLR in 2.5-D FRADO: Dynamics & Geometry
- AGN-starburst evolutionary connection : a physical interpretation based on radiative feedback
- Radiation Hydrodynamic Simulations of Dust-Driven Winds
- Constraining the dynamical importance of hot gas and radiation pressure in quasar outflows using emission line ratios
- Radiation pressure in super star cluster formation
- Cosmic rays across the star-forming galaxy sequence. I: Cosmic ray pressures and calorimetry
- Dusty Cloud Acceleration by Radiation Pressure in Rapidly Star-Forming Galaxies
- The dual role of starburst and active galactic nuclei in driving extreme molecular outflows
- Resolution Requirements and Resolution Problems in Simulations of Radiative Feedback in Dusty Gas
- Spectral shifting strongly constrains molecular cloud disruption by radiation pressure on dust
- Convectively Driven Three Dimensional Turbulence in Massive Star Envelopes: I. A 1D Implementation of Diffusive Radiative Transport
- Infrared Radiation Feedback Does Not Regulate Star Cluster Formation
- Quokka: A code for two-moment AMR radiation hydrodynamics on GPUs
- Radiation Pressure Limits on the Star Formation Efficiency and Surface Density of Compact Stellar Systems
- VETTAM: A scheme for radiation hydrodynamics with adaptive mesh refinement using the variable Eddington tensor method
- Arepo-MCRT: Monte Carlo Radiation Hydrodynamics on a Moving Mesh
- Double Compton and Cyclo-Synchrotron in Super-Eddington Disks, Magnetized Coronae, and Jets
- The Maximum Flux of Star-Forming Galaxies
- General Relativistic Implicit Monte Carlo Radiation-Hydrodynamics
- Dust in the Wind with Resonant Drag Instabilities: I. The Dynamics of Dust-Driven Outflows in GMCs and HII Regions
- Three Dimensional Natures of Massive Star Envelopes
- Comparing Moment-Based and Monte Carlo Methods of Radiation Transport Modeling for Type II-Plateau Supernova Light Curves
- Dust Dynamics in AGN Winds: A New Mechanism For Multiwavelength AGN Variability
- Dusty Cloud Acceleration with Multiband Radiation
- What powers galactic outflows: nuclear starbursts or AGN?
- Star Formation for Predictive Primordial Galaxy Formation
- AGN cool feedback and analogy with X-ray binaries: from radiation pressure to cosmic ray driven outflows