On the Indeterministic Nature of Star Formation on the Cloud Scale
arXiv:1806.10575 · doi:10.1093/mnras/sty2439
Abstract
Molecular clouds are turbulent structures whose star formation efficiency (SFE) is strongly affected by internal stellar feedback processes. In this paper we determine how sensitive the SFE of molecular clouds is to randomised inputs in the star formation feedback loop, and to what extent relationships between emergent cloud properties and the SFE can be recovered. We introduce the yule suite of 26 radiative magnetohydrodynamic (RMHD) simulations of a 10,000 solar mass cloud similar to those in the solar neighbourhood. We use the same initial global properties in every simulation but vary the initial mass function (IMF) sampling and initial cloud velocity structure. The final SFE lies between 6 and 23 percent when either of these parameters are changed. We use Bayesian mixed-effects models to uncover trends in the SFE. The number of photons emitted early in the cluster's life and the length of the cloud provide are the strongest predictors of the SFE. The HII regions evolve following an analytic model of expansion into a roughly isothermal density field. The more efficient feedback is at evaporating the cloud, the less the star cluster is dispersed. We argue that this is because if the gas is evaporated slowly, the stars are dragged outwards towards surviving gas clumps due to the gravitational attraction between the stars and gas. While star formation and feedback efficiencies are dependent on nonlinear processes, statistical models describing cloud-scale processes can be constructed.
24 pages, 16 figures, 6 tables. Accepted to MNRAS, version updated with published title
References in corpus (32)
- Analytical theory for the initial mass function: CO clumps and prestellar cores
- A High Order Godunov Scheme with Constrained Transport and Adaptive Mesh Refinement for Astrophysical MHD
- The Effects of Stellar Rotation. II. A Comprehensive Set of Starburst99 Models
- Momentum Injection by Supernovae in the Interstellar Medium
- On the Star Formation Efficiency of Turbulent Magnetized Clouds
- The SPHINX Cosmological Simulations of the First Billion Years: the Impact of Binary Stars on Reionization
- Building Merger Trees from Cosmological N-body Simulations
- Before the first supernova: combined effects of HII regions and winds on molecular clouds
- Modeling UV Radiation Feedback from Massive Stars: II. Dispersal of Star-Forming Giant Molecular Clouds by Photoionization and Radiation Pressure
- The Global Evolution of Giant Molecular Clouds. I: Model Formulation and Quasi-Equilibrium Behavior
- Modeling jet and outflow feedback during star cluster formation
- Driving Turbulence and Triggering Star Formation by Ionizing Radiation
- Towards a more realistic sink particle algorithm for the RAMSES code
- The Star Formation Rate in the Gravoturbulent Interstellar Medium
- Mutual influence of supernovae and molecular clouds
- A Detailed Study of Feedback from a Massive Star
- SLUG - Stochastically Lighting Up Galaxies. II: Quantifying the Effects of Stochasticity on Star Formation Rate Indicators
- Simulations of magnetized multiphase galactic disk regulated by supernovae explosions
- A Portrait of Cold Gas in Galaxies at 60pc Resolution and a Simple Method to Test Hypotheses That Link Small-Scale ISM Structure to Galaxy-Scale Processes
- 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
- The relative impact of photoionizing radiation and stellar winds on different environments
- Feedback in Clouds II: UV Photoionisation and the first supernova in a massive cloud
- Age, size, and position of H ii regions in the Galaxy. Expansion of ionized gas in turbulent molecular clouds
- A simple method to convert sink particles into stars
- Is molecular cloud turbulence driven by external supernova explosions?
- The roles of stellar feedback and galactic environment in star forming molecular clouds
- Forming clusters within clusters: How 30 Doradus recollapsed and gave birth again
- Modelling massive-star feedback with Monte Carlo radiation hydrodynamics: photoionization and radiation pressure in a turbulent cloud
- Simulating the UV Escape Fractions from Molecular Cloud Populations in Star-forming Dwarf and Spiral Galaxies
- Spectral shifting strongly constrains molecular cloud disruption by radiation pressure on dust
- Are turbulent spheres suitable initial conditions for star-forming clouds?
- Intrinsic Axis Ratio Distribution of Early-type Galaxies From Sloan Digital Sky Survey
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- The Physics of Star Cluster Formation and Evolution
- Star Formation Efficiency and Dispersal of Giant Molecular Clouds with UV Radiation Feedback: Dependence on Gravitational Boundedness and Magnetic Fields
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- There is no magnetic braking catastrophe: Low-mass star cluster and protostellar disc formation with non-ideal magnetohydrodynamics
- Effects of the environment and feedback physics on the initial mass function of stars in the STARFORGE simulations
- The MUSE Extremely Deep Field: the Cosmic Web in Emission at High Redshift
- On The Nature of Variations in the Measured Star Formation Efficiency of Molecular Clouds
- Impact of the cosmic background radiation on the initial mass function of metal-poor stars
- Simulating Star Clusters Across Cosmic Time: I. Initial Mass Function, Star Formation Rates and Efficiencies
- Cluster assembly and the origin of mass segregation in the STARFORGE simulations
- SILCC-ZOOM: The early impact of ionizing radiation on forming molecular clouds
- The Geometry and Dynamical Role of Stellar Wind Bubbles in Photoionised HII Regions
- The most massive stars in very young star clusters with a limited mass: Evidence favours significant self-regulation in the star formation processes
- Feedback from OB stars on their parent cloud: Gas exhaustion rather than gas ejection
- Roll of the Dice: A Stochastically Sampled IMF Alters the Stellar Content of Simulated Dwarf Galaxies
- Photoevaporation of Jeans-unstable molecular clumps
- A systematic study of the escape of LyC and Ly photons from star-forming, magnetized turbulent clouds
- When H II Regions are Complicated: Considering Perturbations from Winds, Radiation Pressure, and Other Effects
- The sensitivity of stellar feedback to IMF averaging versus IMF sampling in galaxy formation simulations
- The effect of photoionising feedback on the shaping of hierarchically-forming stellar clusters
- Evidence for Radial Expansion at the Core of the Orion Complex with Gaia EDR3
- Non-ideal magnetohydrodynamics vs turbulence I: Which is the dominant process in protostellar disc formation?
- Do the majority of stars form as gravitationally unbound?
- The formation of massive stellar clusters in converging galactic flows with photoionisation
- Massive star feedback in clusters: variation of the FUV interstellar radiation field in time and space
- The growth of H II regions around massive stars: the role of metallicity and dust
- A dearth of young and bright massive stars in the Small Magellanic Cloud
- FEEDBACK from the NGC7538 HII region
- Non-ideal magnetohydrodynamics vs turbulence II: Which is the dominant process in stellar core formation?
- Photoionising feedback in spiral arm molecular clouds
- Empirically-motivated early feedback: momentum input by stellar feedback in galaxy simulations inferred through observations
- The formation of clusters and OB associations in different density spiral arm environments
- The SATIN project I: Turbulent multi-phase ISM in Milky Way simulations with SNe feedback from stellar clusters
- Shaping the structure of a GMC with radiation and winds
- Stellar winds and photoionization in a spiral arm
- Star cluster formation and feedback in different environments of a Milky Way-like galaxy
- The Energy and Dynamics of Trapped Radiative Feedback with Stellar Winds
- Bringing Stellar Evolution & Feedback Together: Summary of proposals from the Lorentz Center Workshop, 2022
- Impact of Radiation Feedback on the Formation of Globular Cluster Candidates during Cloud-Cloud Collisions
- MOCCA: Effects of pristine gas accretion and cluster migration on globular cluster evolution, global parameters, and multiple stellar populations
- Numerical Methods for Simulating Star Formation
- Grouped star formation: converting sink particles to stars in hydrodynamical simulations
- Why most molecular clouds are gravitationally dominated
- Supernovae and photoionizing feedback in spiral arm molecular clouds
- Influence of protostellar jets and HII regions on the formation and evolution of stellar clusters