Stellar population synthesis models with a physically varying IMF
arXiv:2502.03529 · doi:10.1093/mnras/staf091
Abstract
Interpreting galactic luminosity requires assumptions about the galaxy-wide initial mass function (gwIMF), often assumed invariant in most stellar population synthesis (SPS) models. If stars form in clusters with metallicity- and density-dependent \textit{stellar IMFs}, the integrated galaxy-wide IMF (IGIMF) can be calculated, with its shape depending on the star formation rate (SFR) and metallicity. The shape of the IGIMF thus depends on the star formation rate (SFR) and metallicity. We develop the \texttt{SPS-VarIMF} code which enables us for the first time to compute the spectra, luminosities, and remnant populations of galaxies in the context of the varying gwIMF with time, SFR, and an assumed metallicity. Using the \texttt{SPS-VarIMF} code one can calculate how the interpretation from the integrated galactic light may change if the underlying galaxy-wide IMF is assumed to be environmentally dependent instead of being invariant. In particular, we compare the time evolution of the galaxy color and the stellar mass-to-light ratio in different bands for the IGIMF and invariant canonical gwIMF assuming constant and delayed- star formation histories. We show that the underlying gwIMF can be determined by examining the colors and luminosities of late-type galaxies in UV and optical bands. On the other hand, for early-type galaxies, it is difficult to distinguish which gwIMF is valid since adopting the different gwIMFs yields almost identical colors. However, their gwIMF-dependent ratios differ by up to an order of magnitude. Massive present-day elliptical galaxies would have been times as bright as at present when they were forming.
18 pages, 19 figures, 1 table, Accepted for publication in MNRAS
References in corpus (23)
- The propagation of uncertainties in stellar population synthesis modeling I: The relevance of uncertain aspects of stellar evolution and the IMF to the derived physical properties of galaxies
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- The Atlas3D Project - XXX. Star formation histories and stellar population scaling relations of early-type galaxies
- An excess of massive stars in the local 30 Doradus starburst
- A Possible Origin of the Mass-Metallicity Relation of Galaxies
- Using The Baryonic Tully-Fisher Relation to Measure
- The optimally-sampled galaxy-wide stellar initial mass function - Observational tests and the publicly available GalIMF code
- The Stellar Initial Mass Function in Early-Type Galaxies From Absorption Line Spectroscopy. IV. A Super-Salpeter IMF in the center of NGC 1407 from Non-Parametric Models
- Type Ibc supernovae in disturbed galaxies: evidence for a top-heavy IMF
- The chemical evolution of galaxies with a variable IGIMF
- The young stellar population of NGC 4214 as observed with HST. II. Results
- Do the majority of stars form as gravitationally unbound?
- Colors of Ellipticals from GALEX to Spitzer
- The formation of early-type galaxies through monolithic collapse of gas clouds in Milgromian gravity
- Evaluating the impact of binary parameter uncertainty on stellar population properties
- Constraints on the star formation histories of galaxies in the Local Cosmological Volume
- Exploring the impact of IMF and binary parameter stochasticity with a binary population synthesis code
- The cosmological star formation history from the Local Cosmological Volume of galaxies and constraints on the matter homogeneity
- The Fundamental Building Blocks of Galaxies
- The many tensions with dark-matter based models and implications on the nature of the Universe
- Effects of physical conditions on the stellar initial mass function: The low-metallicity star-forming region Sh 2-209
- The convective kissing instability in low-mass M-dwarf models: convective overshooting, semi-convection, luminosity functions, surface abundances and star cluster age dating
- Applications of the IGIMF-theory to the astrophysics of galaxies