High-Redshift Galaxies in Cold Dark Matter Models
arXiv:astro-ph/0005340 · doi:10.1086/339841
Abstract
We use hydrodynamic cosmological simulations to predict the star formation properties of high-redshift galaxies (z=2-6) in five variants of the inflationary cold dark matter scenario, paying particular attention to z=3, the redshift of the largest "Lyman-break galaxy" (LBG) samples. Because we link the star formation timescale to the local gas density, the rate at which a galaxy forms stars is governed mainly by the rate at which it accretes cooled gas from the surrounding medium. At z=3, star formation in most of the simulated galaxies is steady on 200 Myr timescales, and the instantaneous star formation rate (SFR) is correlated with total stellar mass. However, there is enough scatter in this correlation that a sample selected above a given SFR threshold may contain galaxies with a fairly wide range of masses. The redshift history and global density of star formation in the simulations depend mainly on the amplitude of mass fluctuations in the underlying cosmological model. The three models whose mass fluctuation amplitudes agree with recent analyses of the Lyman-alpha forest also reproduce the observed luminosity function of LBGs reasonably well, though the dynamic range of the comparison is small and the theoretical and observational uncertainties are large. The models with higher and lower amplitudes appear to predict too much and too little star formation, respectively, though they are not clearly ruled out. The intermediate amplitude models predict SFR ~ 30-40 Msun/yr for galaxies with a surface density 1 per arcmin^2 per unit redshift at z=3. They predict much higher surface densities at lower SFR, and significant numbers of galaxies with SFR > 10 Msun/yr at z >= 5.
Submitted to ApJ. 31 pages including 10 ps figures. Full resolution version of Fig 2 available at http://www.astronomy.ohio-state.edu/~dhw/Sph/zgal.fig2.ps.gz
References in corpus (14)
- Mass function of dark matter halos
- The Cosmic Infrared Background: Measurements and Implications
- The Rest Frame Optical Spectra of Lyman Break Galaxies: Star Formation, Extinction, Abundances, and Kinematics
- The Stellar Populations and Evolution of Lyman Break Galaxies
- The Rest-Frame Optical Properties of z~3 Galaxies
- Multi-wavelength Observations of Dusty Star Formation at Low and High Redshift
- The Observed Probability Distribution Function, Power Spectrum, and Correlation Function of the Transmitted Flux in the Lyman-alpha Forest
- Star Formation History and Stellar Metallicity Distribution in a Cold Dark Matter Universe
- Damped Lyman alpha absorber and the faint end of the galaxy luminosity function at high redshift
- Simulations of Damped Lyman-Alpha and Lyman Limit Absorbers in Different Cosmologies: Implications for Structure Formation at High Redshift
- The first galaxies: structure and stellar populations
- Evolution of the Luminosity Function and Colors of Galaxies in a Lambda-CDM Universe
- Photometry and Photometric Redshifts of Faint Galaxies in the Hubble Deep Field South NICMOS Field
- The Lyman Break Galaxies: their Progenitors and Descendants
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