Cosmic history of integrated galactic stellar initial mass function : a simulation study
arXiv:1411.3848 · doi:10.1088/0004-637X/808/1/24
Abstract
Theoretical and indirect observational evidences suggest that stellar initial mass function (IMF) increases with redshift. On the other hand star formation rates (SFR) may be as high as 100 yr in star burst galaxies. These may lead to formation of massive clusters hence massive stars to make the integrated galactic stellar initial mass function (IGIMF) top heavy (i.e. proportion of massive stars is higher than less massive stars). We investigate the joint effect of evolving IMF and several measures of SFR in dependence of galaxy wide IMF. The resulting IGIMF have slopes in the high mass regime, which is highly dependent on the minimum mass of the embedded cluster (), star formation rates and mass spectrum indices of embedded clusters (viz. ). It is found that for z 0 - 2, becomes steeper (i.e. bottom heavy), for z 2 - 4, becomes flatter (i.e. top heavy ) and from z 4 onwards becomes again steeper. The effects are faster for higher values of . is flatter also for higher values of . All these effects might be counted for the joint effect of increasing temperature of the ambient medium as well as varying SFR with increasing redshift.
46 pages, 11 figures
References in corpus (18)
- Multi-Wavelength Constraints on the Cosmic Star Formation History from Spectroscopy: the Rest-Frame UV, H-alpha, and Infrared Luminosity Functions at Redshifts 1.9<z<3.4
- The mass evolution of the first galaxies: stellar mass functions and star formation rates at in the CANDELS GOODS-South field
- Star Formation and the Growth of Stellar Mass
- On the Star Formation Rate - Brightest Cluster Relation: Estimating the peak SFR in post-merger galaxies
- The Initial Mass Function of the Massive Star-forming Region NGC 3603 from Near-Infrared Adaptive Optics observations
- Do O-stars form in isolation?
- Evidence for a Long-Standing Top-Heavy IMF in the Central Parsec of the Galaxy
- Super Star Cluster Velocity Dispersions and Virial Masses in the M82 Nuclear Starburst
- On the Similarity between Cluster and Galactic Stellar Initial Mass Functions
- Formation & evolution of the Galactic bulge: constraints from stellar abundances
- The Arches Cluster Mass Function
- Galaxy evolution in the infra-red: comparison of a hierarchical galaxy formation model with SPITZER data
- The (galaxy-wide) IMF in giant elliptical galaxies: From top to bottom
- Carbon-Enhanced Metal-Poor Stars, the Cosmic Microwave Background, and the Stellar IMF in the Early Universe
- Maximum stellar mass versus cluster membership number revisited
- On the infant weight loss of low- to intermediate-mass star clusters
- The Initial Cluster Mass Function of Super Star Clusters in Irregular and Spiral Galaxies
- On Iron Enrichment, Star Formation, and Type Ia Supernovae in Galaxy Clusters
Cited by in corpus (5)
- Uncertainties in Galactic Chemical Evolution Models
- ZFIRE: Using H equivalent widths to investigate the in situ initial mass function at z~2
- Merger-driven evolution of the effective stellar initial mass function of massive early-type galaxies
- Stellar velocity dispersion and initial mass function gradients in dissipationless galaxy mergers
- Random fragmentation of turbulent molecular clouds lying in the central region of giant galaxies