Revealing the properties of void galaxies and their assembly using the eagle simulation

Author:

Rosas-Guevara Yetli1ORCID,Tissera Patricia23ORCID,Lagos Claudia del P45ORCID,Paillas Enrique67ORCID,Padilla Nelson8ORCID

Affiliation:

1. Donostia International Physics Centre (DIPC) , Paseo Manuel de Lardizabal 4, E-20018 Donostia-San Sebastian, Spain

2. Institute of Astronomy, Pontificia Universidad Católica de Chile , Santiago 8970117, Chile

3. Centro de Astro-Ingeniería, Pontificia Universidad Católica de Chile , Santiago 8970117, Chile

4. International Centre for Radio Astronomy Research (ICRAR), M468, University of Western Australia , 35 Stirling Hwy, Crawley, WA 6009, Australia

5. ARC of Excellence for All Sky Astrophysics in 3 Dimensions (ASTRO 3D) , Australia

6. Waterloo Centre for Astrophysics, University of Waterloo , Waterloo, ON N2L 3G1, Canada

7. Department of Physics and Astronomy, University of Waterloo , Waterloo, ON N2L 3G1, Canada

8. Instituto de Astronomía Teórica y Experimental (IATE), Comisión Nacional de Investigaciones Científicas y Técnicas (CONICET), Universidad Nacional de Córdoba , Laprida 854, X500BGR, Córdoba, Argentina

Abstract

ABSTRACT We explore the properties of central galaxies living in voids using the eagle cosmological hydrodynamic simulations. Based on the minimum void-centric distance, we define four galaxy samples: inner void, outer void, wall, and skeleton. We find that inner void galaxies with host halo masses $\lt 10^{12}\,\rm M_{\odot }$ have lower stellar mass and stellar mass fractions than those in denser environments, and the fraction of galaxies with star formation (SF) activity and atomic hydrogen (H i) gas decreases with increasing void-centric distance, in agreement with observations. To mitigate the influence of stellar (halo) mass, we compare inner void galaxies to subsamples of fixed stellar (halo) mass. Compared to denser environments, inner void galaxies with $M_{*}= 10^{[9.0-9.5]}\,\rm M_{\odot }$ have comparable SF activity and H i gas fractions, but the lowest quenched galaxy fraction. Inner void galaxies with $M_{*}= 10^{[9.5-10.5]}\,\rm M_{\odot }$ have the lowest H i gas fraction, the highest quenched fraction and the lowest gas metallicities. On the other hand, inner void galaxies with $M_{*}\gt 10^{10.5}\,\rm M_{\odot }$ have comparable SF activity and H i gas fractions to their analogues in denser environments. They retain the highest metallicity gas that might be linked to physical processes that act with lower efficiency in underdense regions such as AGN (active galaxy nucleus) feedback. Furthermore, inner void galaxies have the lowest fraction of positive gas-phase metallicity gradients, which are typically associated with external processes or feedback events, suggesting they have more quiet merger histories than galaxies in denser environments. Our findings shed light on how galaxies are influenced by their large-scale environment.

Funder

European Research Council

FONDECYT

ARC

European Union

Horizon 2020

BIS

STFC

Durham University

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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