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  THE THREE HUNDRED project: The GIZMO-SIMBA run

Cui, W., Dave, R., Knebe, A., Rasia, E., Gray, M., Pearce, F., et al. (2022). THE THREE HUNDRED project: The GIZMO-SIMBA run. Monthly Notices of the Royal Astronomical Society, 514(1), 977-996. doi:10.1093/mnras/stac1402.

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Cui, Weiguang, Author
Dave, Romeel, Author
Knebe, Alexander, Author
Rasia, Elena, Author
Gray, Meghan, Author
Pearce, Frazer, Author
Power, Chris, Author
Yepes, Gustavo, Author
Anbajagane, Dhayaa, Author
Ceverino, Daniel, Author
Contreras-Santos, Ana, Author
de Andres, Daniel, Author
Petris, Marco De, Author
Ettori, Stefano, Author
Haggar, Roan, Author
Li, Qingyang, Author
Wang, Yang, Author
Yang, Xiaohu, Author
Borgani, Stefano, Author
Dolag, Klaus1, Author           
Zu, Ying, AuthorKuchner, Ulrike, AuthorCañas, Rodrigo, AuthorFerragamo, Antonio, AuthorGianfagna, Giulia, Author more..
Affiliations:
1Computational Structure Formation, MPI for Astrophysics, Max Planck Society, ou_2205642              

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 Abstract: We introduce gizmo-simba, a new suite of galaxy cluster simulations within The Three Hundred project. The Three Hundred consists of zoom re-simulations of 324 clusters with M200≳1014.8M drawn from the MultiDark-Planck N-body simulation, run using several hydrodynamic and semi-analytical codes. The gizmo-simba suite adds a state-of-the-art galaxy formation model based on the highly successful Simba simulation, mildly re-calibrated to match z = 0 cluster stellar properties. Comparing to The Three Hundred zooms run with gadget-x, we find intrinsic differences in the evolution of the stellar and gas mass fractions, BCG ages, and galaxy colour–magnitude diagrams, with gizmo-simba generally providing a good match to available data at z ≈ 0. gizmo-simba’s unique black hole growth and feedback model yields agreement with the observed BH scaling relations at the intermediate-mass range and predicts a slightly different slope at high masses where few observations currently lie. Gizmo-Simba provides a new and novel platform to elucidate the co-evolution of galaxies, gas, and black holes within the densest cosmic environments.

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 Dates: 2022-05-14
 Publication Status: Published online
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 Identifiers: DOI: 10.1093/mnras/stac1402
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Title: Monthly Notices of the Royal Astronomical Society
Source Genre: Journal
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Pages: - Volume / Issue: 514 (1) Sequence Number: - Start / End Page: 977 - 996 Identifier: -