The stellar mass spectrum from non-isothermal gravoturbulent fragmentation
arXiv:astro-ph/0410351 · doi:10.1051/0004-6361:20042178
Abstract
Identifying the processes that determine the initial mass function of stars (IMF) is a fundamental problem in star formation theory. One of the major uncertainties is the exact chemical state of the star forming gas and its influence on the dynamical evolution. Most simulations of star forming clusters use an isothermal equation of state (EOS). However, theoretical predictions and observations suggest that the effective polytropic exponent gamma in the EOS varies with density. We address these issues and study the effect of a piecewise polytropic EOS on the formation of stellar clusters in turbulent, self-gravitating molecular clouds using three-dimensional, smoothed particle hydrodynamics simulations. To approximate the results of published predictions of the thermal behavior of collapsing clouds, we increase the polytropic exponent gamma from 0.7 to 1.1 at some chosen density n_c, which we vary. The change of thermodynamic state at n_c selects a characteristic mass scale for fragmentation M_ch, which we relate to the peak of the observed IMF. Our investigation generally supports the idea that the distribution of stellar masses depends mainly on the thermodynamic state of the star-forming gas. The thermodynamic state of interstellar gas is a result of the balance between heating and cooling processes, which in turn are determined by fundamental atomic and molecular physics and by chemical abundances. Given the abundances, the derivation of a characteristic stellar mass can thus be based on universal quantities and constants.
13 pages, 7 figures, accepted by A&A
References in corpus (1)
Cited by in corpus (207)
- Theory of Star Formation
- Toward Understanding Massive Star Formation
- Comparing the statistics of interstellar turbulence in simulations and observations: Solenoidal versus compressive turbulence forcing
- The Star Formation Rate of Turbulent Magnetized Clouds: Comparing Theory, Simulations, and Observations
- Slow Star Formation in Dense Gas: Evidence and Implications
- The Density Probability Distribution in Compressible Isothermal Turbulence: Solenoidal versus Compressive Forcing
- Filamentary structure of star-forming complexes
- Simulations on a Moving Mesh: The Clustered Formation of Population III Protostars
- Modeling Collapse and Accretion in Turbulent Gas Clouds: Implementation and Comparison of Sink Particles in AMR and SPH
- Radiation-Hydrodynamic Simulations of Collapse and Fragmentation in Massive Protostellar Cores
- Molecular Cloud Evolution II. From cloud formation to the early stages of star formation in decaying conditions
- Global Hierarchical Collapse In Molecular Clouds. Towards a Comprehensive Scenario
- On the diversity and statistical properties of protostellar discs
- The galaxy stellar mass-star formation rate relation: Evidence for an evolving stellar initial mass function?
- A Minimum Column Density of 1 g cm^-2 for Massive Star Formation
- The Big Problems in Star Formation: the Star Formation Rate, Stellar Clustering, and the Initial Mass Function
- Simulating the formation of molecular clouds. I. Slow formation by gravitational collapse from static initial conditions
- Fragmentation of star-forming clouds enriched with the first dust
- Gravitational fragmentation in turbulent primordial gas and the initial mass function of Population III stars
- The Importance of Radiative Feedback for the Stellar Initial Mass Function
- Simulating the formation of molecular clouds. II. Rapid formation from turbulent initial conditions
- The ISM in distant star-forming galaxies: Turbulent pressure, fragmentation and cloud scaling relations in a dense gas disk at z=2.3
- Can Supermassive Black Holes Form in Metal-Enriched High-Redshift Protogalaxies ?
- Evidence of Cosmic Evolution of the Stellar Initial Mass Function
- The First Galaxies: Chemical Enrichment, Mixing, and Star Formation
- Dense gas in the Galactic central molecular zone is warm and heated by turbulence
- Clump morphology and evolution in MHD simulations of molecular cloud formation
- The Fractal Density Structure in Supersonic Isothermal Turbulence: Solenoidal versus Compressive Energy Injection
- On the Rapid Collapse and Evolution of Molecular Clouds
- The SILCC project: III. Regulation of star formation and outflows by stellar winds and supernovae
- Radiation-Hydrodynamic Simulations of the Formation of Orion-Like Star Clusters II. The Initial Mass Function from Winds, Turbulence, and Radiation
- Importance of the Initial Conditions for Star Formation - I. Cloud Evolution and Morphology
- A cosmic-ray dominated ISM in Ultra Luminous Infrared Galaxies: new initial conditions for star formation
- Modeling jet and outflow feedback during star cluster formation
- The Stellar IMF, Core Mass Function, & The Last-Crossing Distribution
- Analytical theory for the initial mass function: II. Properties of the flow
- Filaments in Simulations of Molecular Cloud Formation
- A robust numerical scheme for highly compressible magnetohydrodynamics: Nonlinear stability, implementation and tests
- Gravitational fragmentation and the formation of brown dwarfs in stellar clusters
- TreeCol: a novel approach to estimating column densities in astrophysical simulations
- A General Theory of Turbulent Fragmentation
- Molecular Cloud Evolution IV: Magnetic Fields, Ambipolar Diffusion, and the Star Formation Efficiency
- Towards a more realistic sink particle algorithm for the RAMSES code
- On the nature of star-forming filaments: II. Sub-filaments and velocities
- High- and Low-Mass Star Forming Regions from Hierarchical Gravitational Fragmentation. High local Star Formation Rates with Low Global Efficiencies
- Pregalactic Black Hole Formation with an Atomic Hydrogen Equation of State
- How long does it take to form a molecular cloud?
- Radiation-Hydrodynamic Simulations of the Formation of Orion-Like Star Clusters I. Implications for the Origin of the Initial Mass Function
- The first low-mass stars: critical metallicity or dust-to-gas ratio?
- Extreme Cosmic-Ray-Dominated-Regions: a new paradigm for high star formation density events in the Universe
- The secrets of the nearest starburst cluster: II. The present-day mass function in NGC 3603
- Molecular Cloud Evolution III. Accretion vs. stellar feedback
- The First Galaxies: Assembly with Black Hole Feedback
- Is molecular gas necessary for star formation?
- The efficiency of star formation in clustered and distributed regions
- The Virial Balance of Clumps and Cores in Molecular Clouds
- The density structure and star formation rate of non-isothermal polytropic turbulence
- The Effects of Accretion Luminosity upon Fragmentation in the Early Universe
- Radiation Feedback, Fragmentation, and the Environmental Dependence of the Initial Mass Function
- The Jeans mass and the origin of the knee in the IMF
- Transition of the initial mass function in the metal-poor environments
- From the Convergence of Filaments to Disk-Outflow Accretion: Massive-Star Formation in W33A
- Filamentary fragmentation in a turbulent medium
- Evolving structures of star-forming clusters
- The statistical properties of stars and their dependence on metallicity: the effects of opacity
- The Sizes and Luminosities of Massive Star Clusters
- Is atomic carbon a good tracer of molecular gas in metal-poor galaxies?
- New brown dwarfs in Upper Sco using UKIDSS Galactic Cluster Survey science verification data
- On the Constancy of the Characteristic Mass of Young Stars
- Algorithmic comparisons of decaying, isothermal, supersonic turbulence
- The dependence of star formation on initial conditions and molecular cloud structure
- Brown dwarfs and very low mass stars in the Hyades cluster : a dynamically evolved mass function
- Properties of hierarchically forming star clusters
- The Warm Molecular Gas Around the Cloverleaf Quasar
- Fragmentation in Molecular Clouds and its connection to the IMF
- The effect of dust cooling on low-metallicity star-forming clouds
- Variations in the Stellar IMF: from Bottom to Top
- Cosmological Implications of the Uncertainty in H- Destruction Rate Coefficients
- The role of thermodynamics in disc fragmentation
- Molecular gas heating mechanisms, and star formation feedback in merger/s tarbursts: NGC 6240 and Arp 193 as case studies
- Metals, dust and the cosmic microwave background: fragmentation of high-redshift star-forming clouds
- Star Formation in Isolated Disk Galaxies. II. Schmidt Laws and Efficiency of Gravitational Collapse
- The Mass Spectra of Cores in Turbulent Molecular Clouds and Implications for the Initial Mass Function
- The relationship between the prestellar core mass function and the stellar initial mass function
- The CO/CO ratio in turbulent molecular clouds
- Testing the chemical tagging technique with open clusters
- Implementation of Sink Particles in the Athena Code
- Star Formation in the First Galaxies - II: Clustered Star Formation and the Influence of Metal Line Cooling
- On column density thresholds and the star formation rate
- The Stellar Mass Spectrum in Warm and Dusty Gas: Deviations from Salpeter in the Galactic Centre and in Circum-Nuclear Starburst Regions
- Impact of the cosmic background radiation on the initial mass function of metal-poor stars
- Carbon-Enhanced Metal-Poor Stars, the Cosmic Microwave Background, and the Stellar IMF in the Early Universe
- Star formation at very low metallicity. II: On the insignificance of metal-line cooling during the early stages of gravitational collapse
- Stellar mass spectrum within massive collapsing clumps II. Thermodynamics and tidal forces of the first Larson core
- The lower mass function of the young open cluster Blanco 1: from 30 Mjup to 3 Mo
- The HI-to-H2 Transition in a Turbulent Medium
- Dark cloud cores and gravitational decoupling from turbulent flows
- The Formation of Star Clusters II: 3D Simulations of Magnetohydrodynamic Turbulence in Molecular Clouds
- Fragmentation and Evolution of Molecular Clouds. I: Algorithm and First Results
- Stellar mass spectrum within massive collapsing clumps I. Influence of the initial conditions
- On the formation of very metal-poor stars: The case of SDSS J1029151+172927
- Velocity-coherent Filaments in NGC 1333: Evidence for Accretion Flow?
- A simple method to convert sink particles into stars
- Bondi-Hoyle-Littleton accretion and the upper mass stellar IMF
- The star formation efficiency and its relation to variations in the initial mass function
- Star Formation at Very Low Metallicity. IV. Fragmentation Does Not Depend on Metallicity for Cold Initial Conditions
- Fragmentation and Evolution of Molecular Clouds. II: The Effect of Dust Heating
- Photochemistry and Heating/Cooling of the Multiphase Interstellar Medium with UV Radiative Transfer for Magnetohydrodynamic Simulations
- Star Formation at Very Low Metallicity. V. The Greater Importance of Initial Conditions Compared to Metallicity Thresholds
- Self-gravitating Filament Formation from Shocked Flows: Velocity Gradients across Filaments
- What Physics Determines the Peak of the IMF? Insights from the Structure of Cores in Radiation-Magnetohydrodynamic Simulations
- The Origin of the Stellar Mass Distribution and Multiplicity
- Variable Accretion Rates and Fluffy First Stars
- Low-Metallicity Protostars and the Maximum Stellar Mass Resulting from Radiative Feedback
- Lowering the Characteristic Mass of Cluster Stars by Magnetic Fields and Outflow Feedback
- Numerical and semi-analytic core mass distributions in supersonic isothermal turbulence
- Are fibres in molecular cloud filaments real objects?
- High-resolution simulations of clump-clump collisions using SPH with Particle Splitting
- The stellar Initial Mass Function of the solar neighbourhood revealed by Gaia
- SIRIUS project. I. Star formation models for star-by-star simulations of star clusters and galaxy formation
- What is the role of stellar radiative feedback in setting the stellar mass spectrum?
- How well does CO emission measure the H mass of MCs?
- A quantification of the non-spherical geometry and accretion of collapsing cores
- Signatures of star cluster formation by cold collapse
- Isothermal Fragmentation: Is there a low-mass cut-off?
- Energy budget of forming clumps in numerical simulations of collapsing clouds
- The roles of stellar feedback and galactic environment in star forming molecular clouds
- Star Formation in Molecular Clouds
- Reconstructing fossil sub-structures of the Galactic disk: clues from abundance patterns of old open clusters and moving groups
- Combining radiative transfer and diffuse interstellar medium physics to model star formation
- Protostellar collapse and fragmentation using an MHD GADGET
- WIMP DM and first stars: suppression of fragmentation in primordial star formation
- Star formation in the first galaxies - III. Formation, evolution, and characteristics of the first stellar cluster
- The IMF as a function of supersonic turbulence
- Star formation near an obscured AGN: Variations in the initial mass function
- Ionisation-induced star formation III: Effects of external triggering on the IMF in clusters
- Binary formation and mass function variations in fragmenting discs with short cooling times
- Formation of proto-clusters and star formation within clusters: apparent universality of the initial mass function ?
- Astrophysical fluid simulations of thermally ideal gases with non-constant adiabatic index: numerical implementation
- A bottom-heavy initial mass function for the likely-accreted blue-halo stars of the Milky Way
- A Census of the High-Density Molecular Gas in M82
- Calibrated, cosmological hydrodynamical simulations with variable IMFs I: Method and effect on global galaxy scaling relations
- Is it possible to reconcile extragalactic IMF variations with a universal Milky Way IMF?
- The impact of thermodynamics on gravitational collapse: filament formation and magnetic field amplification
- How first hydrostatic cores, tidal forces and gravo-turbulent fluctuations set the characteristic mass of stars
- A new approach to determine optically thick H2 cooling and its effect on primordial star formation
- Dense gas formation in the Musca filament due to the dissipation of a supersonic converging flow
- Kinematics and Structure of Star-forming Regions: Insights from Cold Collapse Models
- Correlations Between Central Massive Objects And Their Host Galaxies: From Bulgeless Spirals to Ellipticals
- Star formation efficiencies of molecular clouds in a galactic center environment
- Are turbulent spheres suitable initial conditions for star-forming clouds?
- LABOCA mapping of the infrared dark cloud MSXDC G304.74+01.32
- The evolution of temperature and density structures of OB cluster-forming molecular clumps
- Protostellar outflows with Smoothed Particle Magnetohydrodynamics (SPMHD)
- A hybrid SPH/N-body method for star cluster simulations
- Synthetic observations of molecular clouds in a galactic center environment: I. Studying maps of column density and integrated intensity
- Earliest Stages of Protocluster Formation: Substructure and Kinematics of Starless Cores in Orion
- Star Formation in a Turbulent Framework: From Giant Molecular Clouds to Protostars
- The role of the H adiabatic index in the formation of the first stars
- Star-forming cores embedded in a massive cold clump: Fragmentation, collapse and energetic outflows
- Star Formation in Disks: Spiral Arms, Turbulence, and Triggering Mechanisms
- Comparing Models for IMF Variation Across Cosmological Time in Milky Way-like Galaxies
- The Cosmic Microwave Background and the Stellar Initial Mass Function
- A multi-wavelength observation and investigation of six infrared dark clouds
- On the emergent System Mass Function: the contest between accretion and fragmentation
- From dusty filaments to massive stars: The case of NGC 7538 S
- Insights from Simulations of Star Formation
- Competitive Accretion in Sheet Geometry and the Stellar IMF
- Chemical complexity in astrophysical simulations: optimization and reduction techniques
- On the operation of the chemothermal instability in primordial star-forming clouds
- Molecular cloud formation as seen in synthetic Hi and molecular gas observations
- Environmental variation of the low-mass IMF
- The Role of Column Density in the Formation of Stars and Black Holes
- The alignment is in their stars: on the spin-alignment of stars in star clusters
- The initial conditions of star formation: cosmic rays as the fundamental regulators
- Galaxy formation with cold gas accretion and evolving stellar initial mass function
- The Role of Gravity in Producing Power-Law Mass Functions
- Fourier-space combination of Planck and Herschel images
- Evolution of the angular momentum during gravitational fragmentation of molecular clouds
- The dependence of stellar properties on initial cloud density
- Gravitational Fragmentation of Extremely Metal-poor Circumstellar Discs
- The role of 3-body H formation in the fragmentation of primordial gas
- Analysis of the spiral structure in a simulated galaxy
- Dependence of the Star Formation Efficiency on the Parameters of Molecular Cloud Formation Simulations
- Gravity or turbulence V: Star forming regions undergoing violent relaxation
- Anomalous dynamics triggered by a non-convex equation of state in relativistic flows
- Insights from Synthetic Star-forming Regions: III. Calibration of Measurement Techniques of Star-formation Rates
- Is There a Universal Mass Function?
- Does the chemothermal instability have any role in the fragmentation of primordial gas
- On the effects of rotation in primordial star-forming clouds
- Do fragmentation and accretion affect the stellar Initial Mass Function?
- Viscous time lags between starburst and AGN activity
- Astrophysics in 2005
- The influence of the cloud virial parameter on the initial mass function
- Early Science with the Large Millimetre Telescope: Fragmentation of molecular clumps in the Galaxy
- Fragmentation and Evolution of Molecular Clouds. III: The Effect of Dust and Gas Energetics
- Does slow and steady win the race? Investigating feedback processes in giant molecular clouds
- Formation of low-mass stars and brown dwarfs
- Simulating the collapse of rotating primordial gas clouds to study the survival possibility of Pop III protostars
- Random gas motions inside sub-parsec scale supercritical filaments
- On the evolution of irradiated turbulent clouds: A comparative study between modes of triggered star-formation
- Star Formation for Predictive Primordial Galaxy Formation
- The fragmentation of molecular clouds in starburst environments
- When did the initial mass function become bottom-heavy?
- The role of magnetic fields in the fragmentation of the Taurus B213 filament into Sun-type star-forming cores
- Cosmic Radioactivity and Galactic Chemical Evolution
- The Effect of Environment on Massive Star Formation