The Uchuu-universe machine data set: galaxies in and around clusters

Author:

Aung Han12ORCID,Nagai Daisuke1ORCID,Klypin Anatoly3,Behroozi Peter4ORCID,Abdullah Mohamed H56,Ishiyama Tomoaki5ORCID,Prada Francisco7,Pérez Enrique7,López Cacheiro Javier8,Ruedas José7

Affiliation:

1. Department of Physics, Yale University , New Haven, CT 06520, USA

2. Centre for Astrophysics and Planetary Science, Racah Institute of Physics, The Hebrew University , Jerusalem 91904, Israel

3. Department of Astronomy, New Mexico State University , Las Cruces, 88003 NM, USA

4. Steward Observatory, University of Arizona , Tucson, 85719 AZ, USA

5. Institute of Management and Information Technologies, Chiba University , 1-33, Yayoi-cho, Inage-ku, Chiba, 263-8522, Japan

6. Department of Astronomy, National Research Institute of Astronomy and Geophysics , Cairo, 11421, Egypt

7. Instituto de Astrofísica de Andalucía (CSIC) , Glorieta de la Astronomía, E-18080 Granada, Spain

8. Centro de Supercomputación de Galicia (CESGA) , Avenida de Vigo, s/n Campus Sur, E-15705 Santiago de Compostela, Spain

Abstract

ABSTRACT We present the public data release of the Uchuu-UM galaxy catalogues by applying the UniverseMachine algorithm to assign galaxies to the dark matter haloes in the Uchuu N-body cosmological simulation. It includes a variety of baryonic properties for all galaxies down to ∼5 × 108 M⊙ with haloes in a mass range of 1010 < Mhalo/M⊙ < 5 × 1015 up to redshift z = 10. Uchuu-UM includes more than 104 cluster-size haloes in a volume of 8(h−1Gpc)3, reproducing observed stellar mass functions across the redshift range of z = 0−7, galaxy quenched fractions, and clustering statistics at low redshifts. Compared to the previous largest UM catalogue, the Uchuu-UM catalogue includes significantly more massive galaxies hosted by large-mass dark matter haloes. Overall, the number density profile of galaxies in dark matter haloes follows the dark matter profile, with the profile becoming steeper around the splashback radius and flattening at larger radii. The number density profile of galaxies tends to be steeper for larger stellar masses and depends on the colour of galaxies, with red galaxies having steeper slopes at all radii than blue galaxies. The quenched fraction exhibits a strong dependence on the stellar mass and increases towards the inner regions of clusters. The publicly available Uchuu-UM galaxy catalogue presented here can serve to model ongoing and upcoming large galaxy surveys.

Funder

MICINN

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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