English

Galaxy And Mass Assembly (GAMA): Stellar-to-Dynamical Mass Relation I. Constraining the Precision of Stellar Mass Estimates

Astrophysics of Galaxies 2023-08-09 v1

Abstract

In this empirical work, we aim to quantify the systematic uncertainties in stellar mass (M)(M_\star) estimates made from spectral energy distribution (SED) fitting through stellar population synthesis (SPS), for galaxies in the local Universe, by using the dynamical mass (Mdyn)(M_\text{dyn}) estimator as an SED-independent check on stellar mass. We first construct a statistical model of the high dimensional space of galaxy properties; size (Re)(R_e), velocity dispersion (σe)(\sigma_e), surface brightness (Ie)(I_e), mass-to-light ratio (M/L)(M_\star/L), rest-frame colour, S\'ersic index (n)(n) and dynamical mass (Mdyn)(M_\text{dyn}); accounting for selection effects and covariant errors. We disentangle the correlations among galaxy properties and find that the variation in M/MdynM_\star/M_\text{dyn} is driven by σe\sigma_e, S\'ersic index and colour. We use these parameters to calibrate an SED-independent MM_\star estimator, M^\hat{M}_\star. We find the random scatter of the relation MM^M_\star-\hat{M}_\star to be 0.108dex0.108\text{dex} and 0.147dex0.147\text{dex} for quiescent and star-forming galaxies respectively. Finally, we inspect the residuals as a function of SPS parameters (dust, age, metallicity, star formation rate) and spectral indices (Hα\alpha, Hδ\delta, Dn4000)D_n4000). For quiescent galaxies, 65%\sim65\% of the scatter can be explained by the uncertainty in SPS parameters, with dust and age being the largest sources of uncertainty. For star-forming galaxies, while age and metallicity are the leading factors, SPS parameters account for only 13%\sim13\% of the scatter. These results leave us with remaining unmodelled scatters of 0.055dex0.055\text{dex} and 0.122dex0.122\text{dex} for quiescent and star-forming galaxies respectively. This can be interpreted as a conservative limit on the precision in MM_\star that can be achieved via simple SPS-modelling.

Keywords

Cite

@article{arxiv.2306.10693,
  title  = {Galaxy And Mass Assembly (GAMA): Stellar-to-Dynamical Mass Relation I. Constraining the Precision of Stellar Mass Estimates},
  author = {M. Burak Dogruel and Edward N. Taylor and Michelle Cluver and Francesco D'Eugenio and Anna de Graaff and Matthew Colless and Alessandro Sonnenfeld},
  journal= {arXiv preprint arXiv:2306.10693},
  year   = {2023}
}

Comments

Accepted for publication in the Astrophysical Journal on 14 June 2023