Environments of red nuggets at z ∼ 0.7 from the VIPERS survey

Author:

Siudek M12ORCID,Lisiecki K34,Krywult J5,Donevski D36,Haines C P7,Karska A84,Małek K39,Moutard T9ORCID,Pollo A310ORCID

Affiliation:

1. Institut de Física d’Altes Energies (IFAE), The Barcelona Institute of Science and Technology , E-08193 Bellaterra (Barcelona), Spain

2. Institute of Space Sciences (ICE , CSIC), Campus UAB, Carrerde Can Magrans, s/n, E-08193 Barcelona, Spain

3. National Centre for Nuclear Research , ul. Pasteura 7, PL-02-093 Warsaw, Poland

4. Institute of Astronomy, Faculty of Physics, Astronomy and Informatics, Nicolaus Copernicus University , ul. Grudziądzka 5, PL-87-100 Toruń, Poland

5. Institute of Physics, Jan Kochanowski University , ul. Uniwersytecka 7, PL-25-406, Kielce, Poland

6. SISSA , Via Bonomea 265, I-34136 Trieste, Italy

7. Instituto de Astronomía y Ciencias Planetarias de Atacama (INCT), Universidad de Atacama , Copayapu 485, Copiapó, Chile

8. Max-Planck-Institut für Radioastronomie , Auf dem Hügel 69, D-53121 Bonn, Germany

9. Aix Marseille Univ. , CNRS, CNES, LAM, rue Frédéric Joliot-Curie, 13388 Marseille cedex 13, France

10. Astronomical Observatory of the Jagiellonian University , ul. Orla 171, PL-30-244 Kraków, Poland

Abstract

ABSTRACT Red ultra-compact massive galaxies, called red nuggets were formed at high redshifts (z ∼ 2–3). Survivors of red nuggets, known as relics, observed at lower redshifts (z < 2) are believed to remain almost unchanged since their formation. For the first time, we verify the environmental properties of red nuggets at intermediate redshift (0.5 < z < 0.9) using 42 red, massive (log(Mstar/M⊙) ≥ 10.9), and ultra compact (Re < 1.5 kpc) from the VIMOS Public Extragalactic Redshift Survey (VIPERS). We found that the increasing fraction of red galaxies, when moving to denser environments, is driven by the red massive normal-size galaxies. Red nuggets, similarly to red intermediate-mass (10.4 ≲ log (Mstar/M⊙) < 10.9) ultra-compact galaxies, are found in various types of environments, with consistent (within 1σ) fractions across all local densities. Analysis of red nugget stellar ages suggests that relics are preferably found in high-density regions while quiescent red nuggets are overabundant in low-density environments. We speculate that red nuggets have survived to lower redshifts via two channels: i) in low-density environments, where the fraction of red nuggets decreases as time passes due to (very) limited merger activity, ii) in high-density environments, where the number of red nuggets drops at higher redshift due to merger activity and is preserved at lower redshift as the high velocities of clusters prevent them from being cannibalized. Even more, the fraction of red nuggets in clusters may increase due to the addition of red massive normal-size galaxies deprived of their envelopes with cosmic time.

Funder

Horizon 2020

Spanish Ministry of Science and Innovation

Ministry of Science and Higher Education

ANID

FONDECYT

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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