Radiation hydrodynamics of triggered star formation: the effect of the diffuse radiation field
arXiv:1110.5266 · doi:10.1111/j.1365-2966.2011.20062.x
Abstract
We investigate the effect of including diffuse field radiation when modelling the radiatively driven implosion of a Bonnor-Ebert sphere (BES). Radiation-hydrodynamical calculations are performed by using operator splitting to combine Monte Carlo photoionization with grid-based Eulerian hydrodynamics that includes self-gravity. It is found that the diffuse field has a significant effect on the nature of radiatively driven collapse which is strongly coupled to the strength of the driving shock that is established before impacting the BES. This can result in either slower or more rapid star formation than expected using the on-the-spot approximation depending on the distance of the BES from the source object. As well as directly compressing the BES, stronger shocks increase the thickness and density in the shell of accumulated material, which leads to short, strong, photo-evaporative ejections that reinforce the compression whenever it slows. This happens particularly effectively when the diffuse field is included as rocket motion is induced over a larger area of the shell surface. The formation and evolution of 'elephant trunks' via instability is also found to vary significantly when the diffuse field is included. Since the perturbations that seed instabilities are smeared out elephant trunks form less readily and, once formed, are exposed to enhanced thermal compression.
Accepted for publication in MNRAS. 19 pages, 14 figures, 8 tables
References in corpus (8)
- Modelling discontinuities and Kelvin-Helmholtz instabilities in SPH
- Driving Turbulence and Triggering Star Formation by Ionizing Radiation
- Ionisation-induced star formation I: The collect and collapse model
- iVINE - Ionization in the parallel tree/SPH code VINE: First results on the observed age-spread around O-stars
- Smoothed Particle Hydrodynamics simulations of expanding HII regions. I. Numerical methods and tests
- Formation of Pillars at the Boundaries between H II Regions and Molecular Clouds
- Stars at the Tip of Peculiar Elephant Trunk-Like Clouds in IC 1848E: A Possible Third Mechanism of Triggered Star Formation
- Ionization front-driven turbulence in the clumpy interstellar medium
Cited by in corpus (64)
- Dispersal of molecular clouds by ionising radiation
- On the [CII]-SFR relation in high redshift galaxies
- Isolating signatures of major cloud-cloud collisions using position-velocity diagrams
- 3D-PDR: A new three-dimensional astrochemistry code for treating Photodissociation Regions
- The dangers of being trigger--happy
- The modelling of feedback in star formation simulations
- Isolating signatures of major cloud-cloud collisions II: The lifetimes of broad bridge features
- StarBench: The D-type expansion of an HII region
- Monte Carlo Radiative Transfer
- Ionization compression impact on dense gas distribution and star formation, Probability density functions around H ii regions as seen by Herschel
- Clumps and triggered star formation in ionised molecular clouds
- A tidal encounter caught in the act: modelling a star-disc fly-by in the young RW Aurigae system
- Interstellar matter and star formation in W5-E - A Herschel view
- Monte Carlo Radiation Hydrodynamics with Implicit Methods
- Neutrino transport in general relativistic neutron star merger simulations
- Hydrodynamic Photoevaporation of Protoplanetary Disks with Consistent Thermochemistry
- First evidence of external disc photoevaporation in a low mass star forming region: the case of IM Lup
- The first multi-dimensional view of mass loss from externally FUV irradiated protoplanetary discs
- Modeling UV Radiation Feedback from Massive Stars: I. Implementation of Adaptive Ray Tracing Method and Tests
- Comparing simulations of ionisation triggered star formation and observations in RCW 120
- Radiation-hydrodynamical simulations of massive star formation using Monte Carlo radiative transfer: I. Algorithms and numerical methods
- Grand challenges in protoplanetary disc modelling
- The evolution of protoplanetary discs in star formation and feedback simulations
- Radiation-hydrodynamical simulations of massive star formation using Monte Carlo radiative transfer II. The formation of a 25 solar-mass star
- TORUS-3DPDR: A self-consistent code treating three-dimensional photoionization and photodissociation regions
- Synthetic observations of star formation and the interstellar medium
- Probing the wind launching regions of the Herbig Be star HD 58647 with high spectral resolution interferometry
- Determining the mid-plane conditions of circumstellar discs using gas and dust modelling: a study of HD 163296
- Photochemical-dynamical models of externally FUV irradiated protoplanetary discs
- Triggered star formation surrounding Wolf-Rayet star HD 211853
- Modelling massive-star feedback with Monte Carlo radiation hydrodynamics: photoionization and radiation pressure in a turbulent cloud
- On the relative importance of different microphysics on the D-type expansion of galactic HII regions
- A new hybrid radiative transfer method for massive star formation
- On the turbulence driving mode of expanding HII regions
- The growth of H II regions around massive stars: the role of metallicity and dust
- Massive star feedback in clusters: variation of the FUV interstellar radiation field in time and space
- Self-consistent modelling of line-driven hot-star winds with Monte Carlo radiation hydrodynamics
- Kaleidoscope of irradiated disks: MUSE observations of proplyds in the Orion Nebula Cluster. I. Sample presentation and ionization front sizes
- Observing substructure in circumstellar discs around massive young stellar objects
- Accuracy and Efficiency of Raytracing Photoionisation Algorithms
- Magnetic field structure of IC 63 and IC 59 associated to H II region - Sh 185
- Modelling multi-wavelength observational characteristics of bow shocks from runaway early type stars
- Radiation hydrodynamics including irradiation and adaptive mesh refinement with AZEuS. I. Methods
- Testing diagnostics of triggered star formation
- Assessing molecular line diagnostics of triggered star formation using synthetic observations
- Observing gas and dust in simulations of star formation with Monte Carlo radiation transport on Voronoi meshes
- Rapid radiative clearing of protoplanetary discs
- Deep diving off the `Cosmic Cliffs': previously hidden outflows in NGC 3324 revealed by JWST
- General Relativistic Implicit Monte Carlo Radiation-Hydrodynamics
- A Photodissociation Region study of NGC 4038
- The effect of recombination radiation on the temperature and ionization state of partially ionized gas
- Evolution of Prolate Molecular Clouds at Hii Boundaries: II. Formation of BRCs of asymmetrical morphology
- CO-Line and Radio Continuum Study of Elephant Trunks: The Pillars of Creation in M16
- Evolution of Prolate Molecular Clouds at HII Boundaries: I. Formation of fragment-core structures
- Radiation-pressure-driven sub-Keplerian rotation of the disc around the AGB star L2 Pup
- Cloud Disruption via Ionized Feedback: Tracing Pillar Dynamics in Vulpecula
- Illuminating a tadpole's metamorphosis III: quantifying past and present environmental impact
- The population of young low-mass stars in Trumpler 14
- A JWST Preview: Adaptive-Optics Images of H, Br-, and K-continuum in Carina's Western Wall
- The magnetic fields around the cometary globules, L328, L323 and L331
- Effects of Magnetic Field and FUV Radiation on the Structures of Bright-rimmed Clouds
- Radiation hydrodynamic simulations of massive star formation via gravitationally trapped HII regions - Spherically symmetric ionised accretion flows
- ALMA Datacubes and Continuum Maps of the Irradiated Western Wall in Carina
- A multi-ion non-equilibrium solver for ionised astrophysical plasmas with arbitrary elemental abundances