Cosmic star formation rate: a theoretical approach
arXiv:1201.1751 · doi:10.1111/j.1365-2966.2012.20535.x
Abstract
The cosmic star formation rate (CSFR), is an important clue to investigate the history of the assembly and evolution of galaxies. Here, we develop a method to study the CSFR from a purely theoretical point of view. Starting from detailed models of chemical evolution, we obtain the histories of star formation of galaxies of different morphological types. These histories are then used to determine the luminosity functions of the same galaxies by means of a spectro-photometric code. We obtain the CSFR under different hypothesis. First, we study the hypothesis of a pure luminosity evolution scenario, in which all galaxies are supposed to form at the same redshift and then evolve only in luminosity. Then we consider scenarios in which the number density or the slope of the LFs are assumed to vary with redshift. After comparison with available data we conclude that a pure luminosity evolution does not provide a good fit to the data, especially at very high redshift, although many uncertainties are still present in the data. On the other hand, a variation in the number density of ellipticals and spirals as a function of redshift can provide a better fit to the observed CSFR. We also explore cases of variable slope of the LFs with redshift and variations of number density and slope at the same time. We cannot find any of those cases which can improve the fit to the data respect to the solely number density variation. Finally, we compute the evolution of the average cosmic metallicity in galaxies with redshift.
13 pages, 10 figures, accepted for publication in MNRAS. arXiv admin note: substantial text overlap with arXiv:1108.5040
References in corpus (13)
- GOODS-Herschel: an infrared main sequence for star-forming galaxies
- The lesser role of starbursts for star formation at z=2
- UV Luminosity Functions from 132 z~7 and z~8 Lyman-Break Galaxies in the ultra-deep HUDF09 and wide-area ERS WFC3/IR Observations
- z~7-10 Galaxies in the HUDF and GOODS fields, and their UV Luminosity Functions
- The Luminosity Function and Star Formation Rate between Redshifts of 0.07 and 1.47 for Narrow-band Emitters in the Subaru Deep Field
- The Star Formation History of the Universe as Revealed by Deep Radio Observations
- Star Formation History up to z = 7.4: Implications for Gamma-Ray Bursts and the Cosmic Metallicity Evolution
- The H-alpha Luminosity Function and Star Formation Rate Volume Density at z=0.8 from the NEWFIRM H-alpha Survey
- The drop in the cosmic star formation rate below redshift 2 is caused by a change in the mode of gas accretion and by AGN feedback
- Probing cosmic star formation up to z = 9.4 with GRBs
- The [OII]3727 Luminosity function and Star Formation Rate at z~1.2 in the COSMOS 2 Square-degree Field and the Subaru Deep Field
- Are dry mergers of Ellipticals the way to reconcile model predictions with the downsizing?
- Stellar Mass and Velocity Functions of Galaxies: Backward evolution and the fate of Milky Way siblings
Cited by in corpus (11)
- Estimating gas accretion in disc galaxies using the Kennicutt-Schmidt law
- The cosmic dust rate across the Universe
- Galactic and Cosmic Type Ia SN rates: is it possible to impose constraints on SNIa progenitors?
- Towards a census of high-redshift dusty galaxies with : A selection of "500 m-risers"
- The Cosmic Evolution of Magnesium Isotopes
- Predicted rates of merging neutron stars in galaxies
- Testing Homogeneity with Galaxy Star Formation Histories
- Setting firmer constraints on the evolution of the most massive, central galaxies from their local abundances and ages
- The two regimes of the cosmic sSFR evolution are due to spheroids and discs
- Chemical evolution models: GRB host identification and cosmic dust predictions
- On the Origin of Dust in Galaxy Clusters at Low to Intermediate Redshift