The SAMI Galaxy Survey: The Link Between [$\alpha$/Fe] and Kinematic Morphology
Abstract
We explore a sample of 1492 galaxies with measurements of the mean stellar population properties and the spin parameter proxy, , drawn from the SAMI Galaxy Survey. We fit a global - relation, finding that . We observe an anti-correlation between the residuals and the inclination-corrected , which can be expressed as . The anti-correlation appears to be driven by star-forming galaxies, with a gradient of , although a weak relationship persists for the subsample of galaxies for which star formation has been quenched. We take this to be confirmation that disk-dominated galaxies have an extended duration of star formation. At a reference velocity dispersion of 200 km s, we estimate an increase in half-mass formation time from 0.5 Gyr to 1.2 Gyr from low- to high- galaxies. Slow rotators do not appear to fit these trends. Their residual -enhancement is indistinguishable from other galaxies with , despite being both larger and more massive. This result shows that galaxies with experience a similar range of star formation histories, despite their different physical structure and angular momentum.
Keywords
Cite
@article{arxiv.2204.12630,
title = {The SAMI Galaxy Survey: The Link Between [$\alpha$/Fe] and Kinematic Morphology},
author = {Peter J. Watson and Roger L. Davies and Jesse van de Sande and Sarah Brough and Scott M. Croom and Francesco D'Eugenio and Karl Glazebrook and Brent Groves and Ángel R. López-Sánchez and Nicholas Scott and Sam P. Vaughan and C. Jakob Walcher and Joss Bland-Hawthorn and Julia J. Bryant and Michael Goodwin and Jon S. Lawrence and Nuria P. F. Lorente and Matt S. Owers and Samuel Richards},
journal= {arXiv preprint arXiv:2204.12630},
year = {2022}
}
Comments
12 pages, 9 figures