activity
20162024
most citedELUCID IV: Galaxy Quenching and its Relation to Halo Mass, Environment, and Assembly Bias

75 citations · 155 across the 7 of their papers we have counts for

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Showing astro-ph.GAShow all

9 papers · 1 filter

astro-ph.GA2024

ELUCID VIII: Simulating the Coma Galaxy Cluster to Calibrate Model and Understand Feedback

Xiong Luo, Huiyuan Wang, Weiguang Cui +9

We conducted an investigation of the Coma cluster of galaxies by running a series of constrained hydrodynamic simulations with GIZMO-SIMBA and GADGET-3, based on initial conditions…

astro-ph.GA2021

A New Model For Including Galactic Winds in Simulations of Galaxy Formation II: Implementation of PhEW in Cosmological Simulations

Shuiyao Huang, Neal Katz, J'Neil Cottle +3

Although galactic winds play a critical role in regulating galaxy formation, hydrodynamic cosmological simulations do not resolve the scales that govern the interaction between win…

astro-ph.GA2020

A New Model For Including Galactic Winds in Simulations of Galaxy Formation I: Introducing the Physically Evolved Winds (PhEW) Model

Shuiyao Huang, Neal Katz, Evan Scannapieco +5

The propagation and evolution of cold galactic winds in galactic haloes is crucial to galaxy formation models. However, modelling of this process in hydrodynamic simulations of gal…

astro-ph.GA2019★ 10 cited

The Impact of Wind Scalings on Stellar Growth and the Baryon Cycle in Cosmological Simulations

Shuiyao Huang, Neal Katz, Romeel Davé +5

Many phenomenologically successful cosmological galaxy formation simulations employ kinetic winds to model galactic outflows, a crucial ingredient in obtaining predictions that agr…

astro-ph.GA2018

The Robustness of Cosmological Hydrodynamic Simulation Predictions to Changes in Numerics and Cooling Physics

Shuiyao Huang, Neal Katz, Romeel Davé +8

We test and improve the numerical schemes in our smoothed particle hydrodynamics (SPH) code for cosmological simulations, including the pressure-entropy formulation (PESPH), a time…

astro-ph.GA2017★ 75 cited

ELUCID IV: Galaxy Quenching and its Relation to Halo Mass, Environment, and Assembly Bias

Huiyuan Wang, H. J. Mo, Sihan Chen +17

We examine the quenched fraction of central and satellite galaxies as a function of galaxy stellar mass, halo mass, and the matter density of their large scale environment. Matter…