Shocks, cooling and the origin of star formation rates in spiral galaxies
arXiv:1301.1041 · doi:10.1093/mnras/stt004
Abstract
Understanding star formation is problematic as it originates in the large scale dynamics of a galaxy but occurs on the small scale of an individual star forming event. This paper presents the first numerical simulations to resolve the star formation process on sub-parsec scales, whilst also following the dynamics of the interstellar medium (ISM) on galactic scales. In these models, the warm low density ISM gas flows into the spiral arms where orbit crowding produces the shock formation of dense clouds, held together temporarily by their external pressure. Cooling allows the gas to be compressed to sufficiently high densities that local regions collapse under their own gravity and form stars. The star formation rates follow a Schmidt-Kennicutt Σ_{SFR} ~ Σ_{gas}^{1.4} type relation with the local surface density of gas while following a linear relation with the cold and dense gas. Cooling is the primary driver of star formation and the star formation rates as it determines the amount of cold gas available for gravitational collapse. The star formation rates found in the simulations are offset to higher values relative to the extragalactic values, implying a constant reduction, such as from feedback or magnetic fields, is likely to be required. Intriguingly, it appears that a spiral or other convergent shock and the accompanying thermal instability can explain how star formation is triggered, generate the physical conditions of molecular clouds and explain why star formation rates are tightly correlated to the gas properties of galaxies.
13 pages, 12 figures. MNRAS in press
References in corpus (12)
- Molecular Cloud Evolution II. From cloud formation to the early stages of star formation in decaying conditions
- Massive stars in massive clusters II: Disruption of bound clusters by photoionization
- The Birth of Molecular Clouds: Formation of Atomic Precursors in Colliding Flows
- Star Formation in Atomic Gas
- GMC formation by agglomeration and self gravity
- How long does it take to form a molecular cloud?
- The formation of molecular clouds in spiral galaxies
- Maximally Star-Forming Galactic Disks II. Vertically-Resolved Hydrodynamic Simulations of Starburst Regulation
- The effect of stellar winds on the formation of a protocluster
- Giant Molecular clouds: what are they made from, and how do they get there?
- The star formation efficiency and its relation to variations in the initial mass function
- High-resolution simulations of clump-clump collisions using SPH with Particle Splitting
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- The SILCC (SImulating the LifeCycle of molecular Clouds) project: I. Chemical evolution of the supernova-driven ISM
- The Big Problems in Star Formation: the Star Formation Rate, Stellar Clustering, and the Initial Mass Function
- Dawes Review 4: Spiral Structures in Disc Galaxies
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- A sub-parsec resolution simulation of the Milky Way: Global structure of the ISM and properties of molecular clouds
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- The interplay between a galactic bar and a supermassive black hole: nuclear fueling in a sub-parsec resolution galaxy simulation
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- Supernova Driving. IV. The Star Formation Rate of Molecular Clouds
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- Mass Transport and Turbulence in Gravitationally Unstable Disk Galaxies II: The Effects of Star Formation Feedback
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- SILCC-ZOOM: The early impact of ionizing radiation on forming molecular clouds
- The Interstellar Medium and star formation on kpc size scales
- Supernova feedback and the energy deposition in molecular clouds
- On the Star Formation Law for Spiral and Irregular Galaxies
- The scaling relations and star formation laws of ministarburst complexes
- Eventful Evolution of Giant Molecular Clouds in Dynamically Evolving Spiral Arms
- The role of turbulence in star formation laws and thresholds
- Regularly Spaced Infrared Peaks in the Dusty Spirals of Messier 100
- Cloud formation in colliding flows: influence of the choice of cooling function
- Shocks and Star Formation in Stephan's Quintet. I. Gemini Spectroscopy of Hα-bright knots
- Cloud Properties and Correlations with Star Formation in Numerical Simulations of the Three-Phase ISM
- Formation of stellar clusters
- The onset of large scale turbulence in the interstellar medium of spiral galaxies
- Zooming into local active galactic nuclei: The power of combining SDSS-IV MaNGA with higher resolution integral field unit observations
- Embedded Star Formation in S4G Galaxy Dust Lanes
- Chemical evolution during the formation of a protoplanetary disk
- The Early Stage of Molecular Cloud Formation by Compression of Two-phase Atomic Gases
- Comparing the Inner and Outer Star Forming Complexes in the Nearby Spiral Galaxies NGC 628, NGC 5457 and NGC 6946 using UVIT Observations
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- Comparison of Prestellar Core Elongations and Large-Scale Molecular Cloud Structures in the Lupus I Region
- Influence of galactic arm scale dynamics on the molecular composition of the cold and dense ISM II. Molecular oxygen abundance
- Classifying and modelling spiral structures in hydrodynamic simulations of astrophysical discs
- Influence of galactic arm scale dynamics on the molecular composition of the cold and dense ISM I. Observed abundance gradients in dense clouds
- Astrochemical models of interstellar ices: History matters
- Bimodal Behavior and Convergence Requirement in Macroscopic Properties of the Multiphase Interstellar Medium Formed by Atomic Converging Flows
- Numerical Simulations of a Shock-Filament Interaction
- Universal gravity-driven isothermal turbulence cascade in disk galaxies
- Magnetic Fields and Galactic Star Formation Rates
- Photoionising feedback and the star formation rates in galaxies
- Star formation in Galactic flows
- Giant molecular clouds: star factories of the galaxy
- Influence of galactic arm scale dynamics on the molecular composition of the cold and dense ISM III. Elemental depletion and shortcomings of the current physico-chemical models
- Tensor classification of structure in smoothed particle hydrodynamics density fields
- Star formation in galaxies: the role of spiral arms
- Clumpy shocks as the driver of velocity dispersion in molecular clouds: the effects of self-gravity and magnetic fields
- Chemical constraints on the dynamical evolution of the cold core L694
- Formation of prestellar cores via non-isothermal gas fragmentation
- The Mitchell Spectrograph: Studying Nearby Galaxies with the VIRUS Prototype