High-redshift Millennium and Astrid galaxies in effective field theory at the field level
James M. Sullivan, Carolina Cuesta-Lazaro, Mikhail M. Ivanov, Yueying, Ni, Sownak Bose, Boryana Hadzhiyska, C\'esar Hern\'andez-Aguayo, Lars, Hernquist, and Rahul Kannan

TL;DR
This study measures effective field theory bias parameters for high-redshift galaxies using advanced simulations, demonstrating EFT's potential for accurate modeling in future galaxy surveys at z=3.
Contribution
It introduces a field-level EFT forward model to precisely measure bias parameters of high-redshift galaxies from hydrodynamical simulations, aiding future large-scale structure analyses.
Findings
Bias parameters are consistent with halo model predictions.
Non-perturbative velocity effects are small for LAEs.
EFT remains effective up to k_max of 0.3-0.8 h/Mpc at z=3.
Abstract
Effective Field Theory (EFT) modeling is expected to be a useful tool in the era of future higher-redshift galaxy surveys such as DESI-II and Spec-S5 due to its robust description of various large-scale structure tracers. However, large values of EFT bias parameters of higher-redshift galaxies could jeopardize the convergence of the perturbative expansion. In this paper we measure the bias parameters and other EFT coefficients from samples of two types of star-forming galaxies in the state-of-the-art MilleniumTNG and Astrid hydrodynamical simulations. Our measurements are based on the field-level EFT forward model that allows for precision EFT parameter measurements by virtue of cosmic variance cancellation. Specifically, we consider approximately representative samples of Lyman-break galaxies (LBGs) and Lyman-alpha emitters (LAEs) that are consistent with the observed (angular)…
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Taxonomy
TopicsAstronomy and Astrophysical Research · Galaxies: Formation, Evolution, Phenomena
