Local and large-scale effects on the astrophysics of void galaxies

Author:

Rodríguez-Medrano Agustín M12ORCID,Paz Dante J12ORCID,Stasyszyn Federico A12ORCID,Rodríguez Facundo12ORCID,Ruiz Andrés N12ORCID,Merchán Manuel12

Affiliation:

1. Instituto de Astronomía Teórica y Experimental , UNC-CONICET, Laprida 854, X5000BGR Córdoba, Argentina

2. Universidad Nacional de Córdoba. Observatorio Astronómico de Córdoba. Laprida 854 , X5000BGR, Córdoba, Argentina

Abstract

ABSTRACT Galaxies in cosmic voids have been reported with properties related to a delayed evolution compared to the rest of the Universe. These characteristics reflect the interaction of galaxies with the environment. However, it is not clear the degree of influence of the large-scale structure on the properties of void galaxies or if these are only influenced by the low local density around them typical of these regions. In this article, we identified cosmic voids in the SDSS-DR16 and studied the g–r colour, star formation rate, and concentration of galaxies. We identified galaxy groups to characterize the local environment and studied the properties of galaxies as a function of total and stellar masses, separately analysing those in voids and the general sample. Our results show that galaxies that inhabit haloes of a given mass (below ${\sim}10^{13.5}{\rm M}_{\odot }$), are bluer, have a higher star formation rate and are less concentrated when the host halo is inside voids compared to other regions. For larger halo masses, the trend disappears. We also analyse whether the properties of galaxies are sensitive to the type of voids that inhabit. This is done by separating voids embedded in overdense regions (S-type) from those that asymptotically converge to the average density of the Universe (R-type). We found that galaxies in R-type voids are bluer, with higher SFR and less concentration than in S-type voids. Our results indicate some degree of correlation of galaxy properties with the large-scale environment provided by voids, suggesting possible second-order mechanisms in galaxy evolution.

Funder

CONICET

SECYT

FonCyT

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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