Properties of reionization-era galaxies from JWST luminosity functions and 21-cm interferometry
Jaehong Park (1), Nicolas Gillet (1), Andrei Mesinger (1), Bradley, Greig (2, 3) ((1) Scuola Normale Superiore, (2) ARC Centre of Excellence, for All-Sky Astrophysics in 3 Dimensions (ASTRO 3D) (3) School of Physics,, The University of Melbourne)

TL;DR
This paper explores how upcoming JWST and 21-cm interferometry observations can jointly constrain the properties of high-redshift galaxies and the Epoch of Reionization, using mock data from simulations and models.
Contribution
It introduces a framework combining JWST luminosity functions and 21-cm data to improve constraints on galaxy formation and reionization parameters at high redshift.
Findings
JWST data alone can improve parameter constraints by a factor of 2-3.
Combining 21-cm and JWST data significantly reduces degeneracies in astrophysical parameters.
21-cm observations greatly enhance constraints on the Epoch of Reionization history.
Abstract
Next generation observatories will enable us to study the first billion years of our Universe in unprecedented detail. Foremost among these are 21-cm interferometry with the HERA and the SKA, and high- galaxy observations with the James Webb Space Telescope (JWST). Taking a basic galaxy model, in which we allow the star formation rates and ionizing escape fractions to have a power-law dependence on halo mass with an exponential turnover below some threshold, we quantify how observations from these instruments can be used to constrain the astrophysics of high- galaxies. For this purpose, we generate mock JWST LFs, based on two different hydrodynamical cosmological simulations; these have intrinsic luminosity functions (LFs) which turn over at different scales and yet are fully consistent with present-day observations. We also generate mock 21-cm power spectrum observations, using…
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