A modified star formation law as a solution to open problems in galaxy evolution
arXiv:1107.4419 · doi:10.1111/j.1365-2966.2012.20569.x
Abstract
In order to reproduce the low mass end of the stellar mass function, most current models of galaxy evolution invoke very efficient supernova feedback. This solution seems to suffer from several shortcomings however, like predicting too little star formation in low mass galaxies at z=0. In this work, we explore modifications to the star formation (SF) law as an alternative solution to achieve a match to the stellar mass function. This is done by applying semi-analytic models based on De Lucia & Blaizot, but with varying SF laws, to the Millennium and Millennium-II simulations, within the formalism developed by Neistein & Weinmann. Our best model includes lower SF efficiencies than predicted by the Kennicutt-Schmidt law at low stellar masses, no sharp threshold of cold gas mass for SF, and a SF law that is independent of cosmic time. These simple modifications result in a model that is more successful than current standard models in reproducing various properties of galaxies less massive than 10^{10}Msun. The improvements include a good match to the observed auto-correlation function of galaxies, an evolution of the stellar mass function from z=3 to z=0 similar to observations, and a better agreement with observed specific star formation rates. However, our modifications also lead to a dramatic over-prediction of the cold mass content of galaxies. This shows that finding a successful model may require fine-tuning of both star formation and supernovae feedback, as well as improvements on gas cooling, or perhaps the inclusion of a yet unknown process which efficiently heats or expels gas at high redshifts.
16 pages, 12 figures, accepted by MNRAS
References in corpus (35)
- UV Star Formation Rates in the Local Universe
- The hierarchical formation of the brightest cluster galaxies
- A Semi-Analytic Model for the Co-evolution of Galaxies, Black Holes, and Active Galactic Nuclei
- Formation of Massive Galaxies at High Redshift: Cold Streams, Clumpy Disks and Compact Spheroids
- The Role of Pressure in GMC Formation II: The H_2 - Pressure Relation
- A primer on hierarchical galaxy formation: the semi-analytical approach
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- COLD GASS, an IRAM Legacy Survey of Molecular Gas in Massive Galaxies: II. The non-universality of the Molecular Gas Depletion Timescale
- Evolution of the dusty infrared luminosity function from z=0 to z=2.3 using observations from Spitzer
- The UV-Optical Color Magnitude Diagram II: Physical Properties and Morphological Evolution On and Off of a Star-Forming Sequence
- A fitting formula for the merger timescale of galaxies in hierarchical clustering
- Dynamical Properties of z~2 Star Forming Galaxies and a Universal Star Formation Relation
- Cosmic evolution of the atomic and molecular gas content of galaxies
- The MORGANA model for the rise of galaxies and active nuclei
- A GALEX Ultraviolet Imaging Survey of Galaxies in the Local Volume
- The Evolution of Stellar Mass and the Implied Star Formation History
- Environmental Effects on Satellite Galaxies: The Link Between Concentration, Size and Colour Profile
- Gas expulsion by quasar-driven winds as a solution to the over-cooling problem in galaxy groups and clusters
- On the impact of empirical and theoretical star formation laws on galaxy formation
- Modelling galaxy clustering in a high resolution simulation of structure formation
- Extended Schmidt Law: Role Of Existing Stars In Current Star Formation
- The Atomic to Molecular Transition and its Relation to the Scaling Properties of Galaxy Disks in the Local Universe
- The baryon fraction of LambdaCDM haloes
- The clustering of narrow-line AGN in the local Universe
- Understanding the H2/HI Ratio in Galaxies
- The Dependence of Galaxy Formation on Cosmological Parameters: Can we distinguish the WMAP1 and WMAP3 Parameter Sets?
- MOIRCS Deep Survey IV: Evolution of Galaxy Stellar Mass Function Back to z ~ 3
- On the puzzling plateau in the specific star formation rate at z=2-7
- Searching for Low Surface-brightness Galaxies in the Hubble Ultra Deep Field: Implications for the Star Formation Efficiency in Neutral Gas at z ~ 3
- Modelling and interpreting the dependence of clustering on the spectral energy distributions of galaxies
- Monte Carlo Markov Chain Parameter Estimation in Semi-Analytic Models of Galaxy Formation
- Dwarf galaxy populations in present-day galaxy clusters: I. Abundances and red fractions
- Star Formation from DLA Gas in the Outskirts of Lyman Break Galaxies at z~3
- A tale of two populations: the stellar mass of central and satellite galaxies
- The specific star formation rate and stellar mass fraction of low-mass central galaxies in cosmological simulations
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- A fundamental problem in our understanding of low mass galaxy evolution
- Evidence for a change in the dominant satellite galaxy quenching mechanism at z=1
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- A Comparison between Semi-Analytic Model Predictions for the CANDELS Survey
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- On the scatter in the relation between stellar mass and halo mass: random or halo formation time dependent?
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