English

The physical connection between central stellar surface density and stellar spin in SAMI and MaNGA nearby galaxies

Astrophysics of Galaxies 2022-05-04 v1

Abstract

The stellar surface density within the inner 1 kpc (Σ1\Sigma_{1}) has become a popular tool for understanding the growth of galaxies and its connection with the quenching of star formation. The emerging picture suggests that building a central dense core is a necessary condition for quenching. However, it is not clear whether changes in Σ1\Sigma_{1} trace changes in stellar kinematics and the growth of dispersion-dominated bulges. In this paper, we combine imaging from the Sloan Digital Sky Survey with stellar kinematics from the Sydney-AAO Multi-object Integral-field unit (SAMI) and Mapping Nearby Galaxies at Apache Point Observatory (MaNGA) surveys to quantify the correlation between Σ1\Sigma_{1} and the proxy for stellar spin parameter within one effective radius (λre\lambda_{re}) for 1599 nearby galaxies. We show that, on the star-forming main sequence and at fixed stellar mass, changes in Σ1\Sigma_{1} are mirrored by changes in λre\lambda_{re}. While forming stars, main sequence galaxies remain rotationally-dominated systems, with their Σ1\Sigma_{1} increasing but their stellar spin staying either constant or slightly increasing. The picture changes below the main sequence, where Σ1\Sigma_{1} and λre\lambda_{re} are no longer correlated. Passive systems show a narrower range of Σ1\Sigma_{1}, but a wider range of λre\lambda_{re} compared to star-forming galaxies. Our results indicate that, from a structural point of view, passive galaxies are a more heterogeneous population than star-forming systems, and may have followed a variety of evolutionary paths. This also suggests that, if dispersion-dominated bulges still grow significantly at zz\sim0, this generally takes place during, or after, the quenching phase.

Keywords

Cite

@article{arxiv.2204.04815,
  title  = {The physical connection between central stellar surface density and stellar spin in SAMI and MaNGA nearby galaxies},
  author = {L. Cortese and A. Fraser-McKelvie and J. Woo and B. Catinella and K. Harborne and J. van de Sande and J. Bland-Hawthorn and S. Brough and J. J. Bryant and S. Croom and S. Sweet},
  journal= {arXiv preprint arXiv:2204.04815},
  year   = {2022}
}

Comments

12 pages, 7 figures, 1 table. MNRAS in press