The interdependence between density PDF, CMF and IMF and their relation with Mach number in simulations
arXiv:2412.12809 · doi:10.1051/0004-6361/202453497
Abstract
The initial mass function (IMF) of stars and the corresponding cloud mass function (CMF), traditionally considered universal, exhibit variations that are influenced by the local environment. Notably, these variations are apparent in the distribution's tail, indicating a possible relationship between local dynamics and mass distribution. Our study is designed to examine how the gas PDF , the IMF and the CMF depend on the local turbulence within the interstellar medium (ISM). We run hydrodynamical simulations on small star-forming sections of the ISM under varying turbulence conditions, characterized by Mach numbers of 1, 3.5, and 10, and with two distinct mean densities. This approach allowed us to observe the effects of different turbulence levels on the formation of stellar and cloud masses. The study demonstrates a clear correlation between the dynamics of the cloud and the IMF. In environments with lower levels of turbulence likely dominated by gravitational collapse, our simulations showed the formation of more massive structures with a powerlaw gas PDF, leading to a top-heavy IMF and CMF. On the other hand environment dominated by turbulence result in a lognormal PDF and a Salpeter-like CMF and IMF. This indicates that the turbulence level is a critical factor in determining the mass distribution within star-forming regions.
References in corpus (65)
- Galactic Stellar and Substellar Initial Mass Function
- Power-law distributions in empirical data
- Theory of Star Formation
- Cosmological Hydrodynamics with Adaptive Mesh Refinement: a new high resolution code called RAMSES
- The Initial Mass Function of Stars: Evidence for Uniformity in Variable Systems
- Control of star formation by supersonic turbulence
- From filamentary clouds to prestellar cores to the stellar IMF: Initial highlights from the Herschel Gould Belt survey
- Interstellar Turbulence I: Observations and Processes
- Powerlaw: a Python package for analysis of heavy-tailed distributions
- The Stellar IMF from Turbulent Fragmentation
- Comparing the statistics of interstellar turbulence in simulations and observations: Solenoidal versus compressive turbulence forcing
- Analytical theory for the initial mass function: CO clumps and prestellar cores
- The mass function of dense molecular cores and the origin of the IMF
- Stellar, Brown Dwarf, and Multiple Star Properties from Hydrodynamical Simulations of Star Cluster Formation
- HOP: A New Group-Finding Algorithm for N-body Simulations
- Physical properties of molecular clouds for the entire Milky Way disk
- Turbulent molecular clouds
- Star formation in clusters: a survey of compact mm-wave sources in the Serpens core
- Low Virial Parameters in Molecular Clouds: Implications for High Mass Star Formation and Magnetic Fields
- On the Density Distribution in Star-forming Interstellar Clouds
- Embedding Lagrangian Sink Particles in Eulerian Grids
- An excess of massive stars in the local 30 Doradus starburst
- Numerical simulations of compressively driven interstellar turbulence: I. Isothermal gas
- On the Density Probability Function of Galactic Gas. I. Numerical Simulations and the Significance of the Polytropic Index
- Kinetic and Structural Evolution of Self-gravitating, Magnetized Clouds: 2.5-Dimensional Simulations of Decaying Turbulence
- The ALMA Survey of 70 m dark High-mass clumps in Early Stages (ASHES). I. Pilot Survey: Clump Fragmentation
- The initial conditions of star formation in the Ophiuchus main cloud: Kinematics of the protocluster condensations
- Two regimes of Turbulent Fragmentation and the stellar IMF from Primordial to Present Day Star Formation
- The Initial Mass Function of the Massive Star-forming Region NGC 3603 from Near-Infrared Adaptive Optics observations
- The Massive Star Population of Cygnus OB2
- Towards a more realistic sink particle algorithm for the RAMSES code
- The Star Formation History and Mass Function of the Double Cluster h and Chi Persei
- A Model for (Non-Lognormal) Density Distributions in Isothermal Turbulence
- Analytical theory for the initial mass function: III time dependence and star formation rate
- The CFHT Open Star Cluster Survey. IV. Two Rich, Young Open Star Clusters: NGC 2168 (M35) and NGC 2323 (M50)
- The Unusual Initial Mass Function of the Arches Cluster
- ALMA-IMF I -- Investigating the origin of stellar masses: Introduction to the Large Program and first results
- The low-mass Initial Mass Function in the 30 Doradus starburst cluster
- Fragmentation in Molecular Clouds and its connection to the IMF
- The Formation of Star Clusters I: 3D Simulations of Hydrodynamic Turbulence
- The stellar IMF from Isothermal MHD Turbulence
- Distance and the Initial Mass Function of Young Open Clusters In The Eta Carina Nebula: Tr 14 and Tr 16
- The Mass Spectra of Cores in Turbulent Molecular Clouds and Implications for the Initial Mass Function
- Effects of the environment and feedback physics on the initial mass function of stars in the STARFORGE simulations
- The Stellar Mass Distribution in the Giant Star Forming Region NGC 346
- The Starburst Cluster Westerlund 1: The Initial Mass Function and Mass Segregation
- Testing the universality of the IMF with Bayesian statistics: young clusters
- Stellar mass spectrum within massive collapsing clumps I. Influence of the initial conditions
- Bondi-Hoyle-Littleton accretion and the upper mass stellar IMF
- From the CMF to the IMF: Beyond the Core-Collapse Model
- Episodic accretion constrained by a rich cluster of outflows
- Mass functions and photometric binaries in nine open clusters
- The Pleiades mass function: models versus observations
- The core and stellar mass functions in massive collapsing filaments
- Strong dependence of the physical properties of cores on spatial resolution in observations and simulations
- The role of the turbulence driving mode for the Initial Mass Function
- Testing the Turbulent Origin of the Stellar Initial Mass Function
- The highly variable time evolution of star-forming cores identified with dendrograms
- ALMA-IMF. VII. First release of the full spectral line cubes: Core kinematics traced by DCN J=(3-2)
- Mass function of a young cluster in a low-metallicity environment. Sh 2-209
- Large-scale turbulent driving regulates star formation in high-redshift gas-rich galaxies II: Influence of the magnetic field and the turbulent compressive fraction
- Cloud properties across spatial scales in simulations of the interstellar medium
- Core to ultracompact HII region evolution in the W49A massive protocluster
- Inefficient star formation in high Mach number environments I. The turbulent support analytical model
- Inefficient star formation in high Mach number environments II. Numerical simulations and comparison with analytical models