Effects of the integrated galactic IMF on the chemical evolution of the solar neighbourhood
arXiv:1004.0832 · doi:10.1111/j.1365-2966.2010.16803.x
Abstract
The initial mass function determines the fraction of stars of different intial mass born per stellar generation. In this paper, we test the effects of the integrated galactic initial mass function (IGIMF) on the chemical evolution of the solar neighbourhood. The IGIMF (Weidner & Kroupa 2005) is computed from the combination of the stellar intial mass function (IMF), i.e. the mass function of single star clusters, and the embedded cluster mass function, i.e. a power law with index beta. By taking into account also the fact that the maximum achievable stellar mass is a function of the total mass of the cluster, the IGIMF becomes a time-varying IMF which depends on the star formation rate. We applied this formalism to a chemical evolution model for the solar neighbourhood and compared the results obtained by assuming three possible values for beta with the results obtained by means of a standard, well-tested, constant IMF. In general, a lower absolute value of beta implies a flatter IGIMF, hence a larger number of massive stars and larger metal ejection rates. This translates into higher type Ia and II supernova rates, higher mass ejection rates from massive stars and a larger amount of gas available for star formation, coupled with lower present-day stellar mass densities. (abridged) We also discuss the importance of the present day stellar mass function (PDMF) in providing a way to disentangle among various assumptions for beta. Our results indicate that the model adopting the IGIMF computed with beta ~2 should be considered the best since it allows us to reproduce the observed PDMF and to account for most of the chemical evolution constraints considered in this work.
22 pages, 19 figures
References in corpus (10)
- Determination of the Local Dark Matter Density in our Galaxy
- Radial variation of attenuation and star formation in the largest late-type disks observed with GALEX
- Converting H Luminosities into Star Formation Rates
- The Effect of Different Type Ia Supernova Progenitors on Galactic Chemical Evolution
- A new formulation of the Type Ia SN rate and its consequences on galactic chemical evolution
- An inhomogeneous model for the Galactic halo: a possible explanation for the spread observed in s- and r-process elements
- Clustered star formation as a natural explanation of the Halpha cutoff in disc galaxies
- The origin of abundance gradients in the Milky Way: the predictions of different models
- Cosmic Supernova Rates and the Hubble Sequence
- Is the dark matter halo of the Milky Way flattened?
Cited by in corpus (23)
- Galaxies as simple dynamical systems: observational data disfavor dark matter and stochastic star formation
- A Census of Oxygen in Star-Forming Galaxies: An Empirical Model Linking Metallicities, Star Formation Rates and Outflows
- Destruction of Interstellar Dust in Evolving Supernova Remnant Shock Waves
- Modelling Element Abundances in Semi-analytic Models of Galaxy Formation
- The galaxy-wide IMF of dwarf late-type to massive early-type galaxies
- Iron: A Key Element for Understanding the Origin and Evolution of Interstellar Dust
- The dust-to-stellar mass ratio as a valuable tool to probe the evolution of local and distant star forming galaxies
- The Evolution of Dust Mass in the Ejecta of SN1987A
- Chemodynamics of a Simulated Disc Galaxy: Initial Mass Functions and SNIa Progenitors
- The chemical evolution of galaxies with a variable IGIMF
- The stellar metallicity distribution of disc galaxies and bulges in cosmological simulations
- Galactic and Cosmic Type Ia SN rates: is it possible to impose constraints on SNIa progenitors?
- The IGIMF and other IMFs in dSphs: the case of Sagittarius
- Testing Stellar Population Fitting Ingredients with Globular Clusters I: Stellar Libraries
- Was the Milky Way a chain galaxy? Using the IGIMF theory to constrain the thin-disk star formation history and mass
- The influence of a top-heavy integrated galactic IMF and dust on the chemical evolution of high-redshift starbursts
- A possible solution to the [alpha/Fe]-sigma problem in early type galaxies within a hierarchical galaxy formation model
- Second generation star formation in globular clusters of different masses
- The [alpha/Fe] ratios of very metal-poor stars within the IGIMF theory
- Chemo-dynamical simulations of dwarf galaxy evolution
- Chemical evolution of ultra-faint dwarf galaxies: testing the IGIMF
- Stellar population synthesis models with a physically varying IMF
- Submillimeter Observations of CLASH 2882 and the Evolution of Dust in this Galaxy