Galaxy evolution in modified gravity simulations: using passive galaxies to constrain gravity with upcoming surveys
Diego Pallero, Facundo A. G\'omez, Nelson D. Padilla, Yara L. Jaff\'e,, Carlton M. Baugh, Baojiu Li, C\'esar Hern\'andez-Aguayo, Christian Arnold

TL;DR
This study uses hydrodynamical simulations to compare galaxy properties in different modified gravity models versus standard gravity, revealing denser gas profiles and higher quenching fractions in modified gravity scenarios, which affect galaxy color and evolution.
Contribution
It provides a detailed quantitative analysis of galaxy evolution in modified gravity models using full-physics simulations, highlighting differences from standard gravity.
Findings
Modified gravity models produce denser gas density profiles.
Galaxies in modified gravity are generally redder and older.
Higher quenched fractions are observed in modified gravity environments.
Abstract
We present a quantitative analysis of the properties of galaxies and structures evolving in universes dominated by different modified gravitational models, including two variants of the f(R)-gravity (F) and two of the Dvali-Gabdadze-Poratti (N) braneworld model, which respectively feature the chameleon and Vainshtein screening mechanisms. Using the Simulation HYdrodynamics BeyONd Einstein (SHYBONE) cosmological hydrodynamical full-physics simulations suite, we study the departures in the properties of galaxies residing in different environments with respect to the standard model (GR). Using two different criteria to compare, we find that structures formed within modified gravity tend to show a denser gas density profile than their GR counterparts. Within the different modified gravity models, N1 and F5 gravity models show greater departures from the standard model, with gas density…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Cosmology and Gravitation Theories · Astronomy and Astrophysical Research
