From haloes to Galaxies - I. The dynamics of the gas regulator model and the implied cosmic sSFR history
arXiv:1402.5964 · doi:10.1093/mnras/stu1288
Abstract
We explore the basic parameters that drive the evolution of the fundamental properties of star forming galaxies within the gas regulator model, or bathtub-model. We derive the general analytic form of the evolution of the key galaxy properties, i.e. gas mass, star formation rate (SFR), stellar mass, specific SFR, gas fraction, gas phase metallicity and stellar metallicity, without assuming that galaxies live in the equilibrium state. We find that the timescale required to reach equilibrium, tau_eq, which is determined by the product of star-formation efficiency and mass-loading factor, is the central parameter that is essentially in control of the evolution of all key galaxy properties. The scatters in most of the key scaling relations, such as the mass-SFR relation and mass-metallicity relation, are primarily governed by tau_eq. Most strikingly, the predicted sSFR evolution is controlled solely by tau_eq (apart from the cosmic time). Although the precise evolution of the sSFR depends on tau_eq, the sSFR history is largely insensitive to different values of tau_eq. The difference between the minimum and maximum sSFR at any epoch is less than a factor of four. The shape of the predicted sSFR history simply mimics that of the specific mass increase rate of the dark matter halos (sMIR_DM) with the typical value of the sSFR around 2*sMIR_DM, in good agreement with the predictions from typical Semi-Analytic Models (SAMs), but both are fundamentally different from the observed sSFR history. This clearly implies that some key process is missing in both typical SAMs and gas regulator model, and we hint at some possible culprit. We emphasize the critical role of tau_eq in controlling the evolution of the galaxy population, especially for gas rich low mass galaxies that are very unlikely to live around the equilibrium state at any epoch and this has been largely ignored in many similar studies.
MNRAS. Accepted 2014 June 25. Received 2014 June 23; in original form 2014 February 25
References in corpus (14)
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- zCOSMOS: A Large VLT/VIMOS redshift survey covering 0 < z < 3 in the COSMOS field
- Massive Molecular Outflows and Evidence for AGN Feedback from CO Observations
- A primer on hierarchical galaxy formation: the semi-analytical approach
- The Origin of the Galaxy Mass-Metallicity Relation and Implications for Galactic Outflows
- The evolution of the dust and gas content in galaxies
- Metallicity evolution, metallicity gradients and gas fractions at z~3.4
- The SINS/zC-SINF survey of z~2 galaxy kinematics: Evidence for powerful AGN-driven nuclear outflows in massive star-forming galaxies
- Cold gas properties of the Herschel Reference Survey. II. Molecular and total gas scaling relations
- The star-formation history of K-selected galaxies
- An analytic solution for the minimal bathtub toy model: challenges in the star-formation history of high-z galaxies
- The dependence of the galaxy mass-metallicity relation on environment and the implied metallicity of the IGM
- GMASS Ultradeep Spectroscopy of Galaxies at redshift z~2. I. The stellar metallicity
- The effect of differential galactic winds on the chemical evolution of galaxies
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- Bursting and quenching in satellite galaxies
- Universal bimodality in kinematic morphology and the divergent pathways to galaxy quenching
- Galaxy And Mass Assembly (GAMA): The environmental impact on SFR and metallicity in galaxy groups
- Insights on Metal Enrichment and Environmental Effect at with JWST ASPIRE/EIGER and Chemical Evolution Model
- Impact of astrophysical scatter on the Epoch of Reionization [H I] bispectrum
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- The MAGPI survey: The interdependence of the mass, star formation rate, and metallicity in galaxies at z~0.3
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