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Title: PRIMUS: Clustering of Star-forming and Quiescent Central Galaxies at 0.2 < z < 0.9

Abstract

Previous work has demonstrated that at a given stellar mass, quiescent galaxies are more strongly clustered than star-forming galaxies. The contribution to this signal from central, as opposed to satellite, galaxies is not known, which has strong implications for galaxy evolution models. To investigate the contribution from central galaxies, we present in this work measurements of the clustering of isolated primary (IP) galaxies, used as a proxy for central galaxies, at 0.2 < z < 0.9 with data from the PRIMUS galaxy redshift survey. Using a sample of spectroscopic redshifts for ~ 60, 000 galaxies with M* ≳ 109M covering 5 deg2 on the sky, we define IP galaxies using isolation cuts in spatial proximity and stellar mass of nearby galaxies. We find that at fixed stellar mass, quiescent IP galaxies are more strongly clustered than star-forming IP galaxies at z ~ 0.35 (10σ). Using mock galaxy catalogs based on recent halo occupation models of Behroozi et al. (2019) and designed to replicate the parameters of the PRIMUS survey dataset, we find that these clustering differences are due in part to quiescent central galaxies being more strongly clustered than star-forming central galaxies. This is consistent with either distinct stellar-to-halo massmore » relations for quiescent and star-forming central galaxies, and/or central galaxy assembly bias. We additionally use mock catalogs to assess the dependence of both incompleteness and satellite galaxy contamination in the IP galaxy samples on redshift, galaxy type, and stellar mass, and demonstrate how isolation criteria yield biased subsamples of central galaxies via environmental incompleteness, or the preferential exclusion of central galaxies in overdense environments.« less

Authors:
ORCiD logo [1]; ORCiD logo [1]; ORCiD logo [2];  [3]
  1. Univ. of California, San Diego, CA (United States)
  2. Argonne National Lab. (ANL), Argonne, IL (United States)
  3. Siena College, Loudonville, NY (United States)
Publication Date:
Research Org.:
Argonne National Laboratory (ANL), Argonne, IL (United States)
Sponsoring Org.:
USDOE Office of Science (SC); National Science Foundation (NSF); National Aeronautics and Space Administration (NASA)
OSTI Identifier:
1767133
Grant/Contract Number:  
AC02-06CH11357; AST-0607701; AST-0908246; AST-0908442; AST-0908354; 08-ADP08-0019
Resource Type:
Accepted Manuscript
Journal Name:
The Astrophysical Journal (Online)
Additional Journal Information:
Journal Name: The Astrophysical Journal (Online); Journal Volume: 884; Journal Issue: 1; Journal ID: ISSN 1538-4357
Publisher:
Institute of Physics (IOP)
Country of Publication:
United States
Language:
English
Subject:
79 ASTRONOMY AND ASTROPHYSICS; galaxies: evolution; galaxies: halos; galaxies: high-redshift; large-scale structure of universe

Citation Formats

Berti, Angela M., Coil, Alison L., Hearin, Andrew P., and Moustakas, John. PRIMUS: Clustering of Star-forming and Quiescent Central Galaxies at 0.2 < z < 0.9. United States: N. p., 2019. Web. doi:10.3847/1538-4357/ab3b5d.
Berti, Angela M., Coil, Alison L., Hearin, Andrew P., & Moustakas, John. PRIMUS: Clustering of Star-forming and Quiescent Central Galaxies at 0.2 < z < 0.9. United States. https://doi.org/10.3847/1538-4357/ab3b5d
Berti, Angela M., Coil, Alison L., Hearin, Andrew P., and Moustakas, John. Mon . "PRIMUS: Clustering of Star-forming and Quiescent Central Galaxies at 0.2 < z < 0.9". United States. https://doi.org/10.3847/1538-4357/ab3b5d. https://www.osti.gov/servlets/purl/1767133.
@article{osti_1767133,
title = {PRIMUS: Clustering of Star-forming and Quiescent Central Galaxies at 0.2 < z < 0.9},
author = {Berti, Angela M. and Coil, Alison L. and Hearin, Andrew P. and Moustakas, John},
abstractNote = {Previous work has demonstrated that at a given stellar mass, quiescent galaxies are more strongly clustered than star-forming galaxies. The contribution to this signal from central, as opposed to satellite, galaxies is not known, which has strong implications for galaxy evolution models. To investigate the contribution from central galaxies, we present in this work measurements of the clustering of isolated primary (IP) galaxies, used as a proxy for central galaxies, at 0.2 < z < 0.9 with data from the PRIMUS galaxy redshift survey. Using a sample of spectroscopic redshifts for ~ 60, 000 galaxies with M* ≳ 109M⊙ covering 5 deg2 on the sky, we define IP galaxies using isolation cuts in spatial proximity and stellar mass of nearby galaxies. We find that at fixed stellar mass, quiescent IP galaxies are more strongly clustered than star-forming IP galaxies at z ~ 0.35 (10σ). Using mock galaxy catalogs based on recent halo occupation models of Behroozi et al. (2019) and designed to replicate the parameters of the PRIMUS survey dataset, we find that these clustering differences are due in part to quiescent central galaxies being more strongly clustered than star-forming central galaxies. This is consistent with either distinct stellar-to-halo mass relations for quiescent and star-forming central galaxies, and/or central galaxy assembly bias. We additionally use mock catalogs to assess the dependence of both incompleteness and satellite galaxy contamination in the IP galaxy samples on redshift, galaxy type, and stellar mass, and demonstrate how isolation criteria yield biased subsamples of central galaxies via environmental incompleteness, or the preferential exclusion of central galaxies in overdense environments.},
doi = {10.3847/1538-4357/ab3b5d},
journal = {The Astrophysical Journal (Online)},
number = 1,
volume = 884,
place = {United States},
year = {Mon Oct 14 00:00:00 EDT 2019},
month = {Mon Oct 14 00:00:00 EDT 2019}
}

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journal, March 2017

  • Coil, Alison L.; Mendez, Alexander J.; Eisenstein, Daniel J.
  • The Astrophysical Journal, Vol. 838, Issue 2
  • DOI: 10.3847/1538-4357/aa63ec

Physical Models of Galaxy Formation in a Cosmological Framework
journal, August 2015


Predicting galaxy star formation rates via the co-evolution of galaxies and haloes
journal, November 2014

  • Watson, Douglas F.; Hearin, Andrew P.; Berlind, Andreas A.
  • Monthly Notices of the Royal Astronomical Society, Vol. 446, Issue 1
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Works referencing / citing this record:

Galactic conformity in both star formation and morphological properties
journal, January 2020

  • Otter, Justin A.; Masters, Karen L.; Simmons, Brooke
  • Monthly Notices of the Royal Astronomical Society, Vol. 492, Issue 2
  • DOI: 10.1093/mnras/stz3626