English

The THESAN project: Lyman-alpha emitter luminosity function calibration

Astrophysics of Galaxies 2023-03-29 v2 Cosmology and Nongalactic Astrophysics

Abstract

The observability of Lyman-alpha emitting galaxies (LAEs) during the Epoch of Reionization can provide a sensitive probe of the evolving neutral hydrogen gas distribution, thus setting valuable constraints to distinguish different reionization models. In this study, we utilize the new THESAN suite of large-volume (95.5 cMpc) cosmological radiation-hydrodynamic simulations to directly model the Lyα\alpha emission from individual galaxies and the subsequent transmission through the intergalactic medium. THESAN combines the AREPO-RT radiation-hydrodynamic solver with the IllustrisTNG galaxy formation model and includes high- and medium-resolution simulations designed to investigate the impacts of halo-mass-dependent escape fractions, alternative dark matter models, and numerical convergence. We find important differences in the Lyα\alpha transmission based on reionization history, bubble morphology, frequency offset from line centre, and galaxy brightness. For a given global neutral fraction, Lyα\alpha transmission reduces when low mass haloes dominate reionization over high mass haloes. Furthermore, the variation across sightlines for a single galaxy is greater than the variation across all galaxies. This collectively affects the visibility of LAEs, directly impacting observed Lyα\alpha luminosity functions (LFs). We employ Gaussian Process Regression using SWIFTEmulator to rapidly constrain an empirical model for dust escape fractions and emergent spectral line profiles to match observed LFs. We find that dust strongly impacts the Lyα\alpha transmission and covering fractions of MUV<19M_{UV} < -19 galaxies in Mvir>1011MM_{vir} > 10^{11} {\rm M}_{\odot} haloes, such that the dominant mode of removing Lyα\alpha photons in non-LAEs changes from low IGM transmission to high dust absorption around z7z \sim 7.

Keywords

Cite

@article{arxiv.2210.16275,
  title  = {The THESAN project: Lyman-alpha emitter luminosity function calibration},
  author = {Clara Xu and Aaron Smith and Josh Borrow and Enrico Garaldi and Rahul Kannan and Mark Vogelsberger and Rüdiger Pakmor and Volker Springel and Lars Hernquist},
  journal= {arXiv preprint arXiv:2210.16275},
  year   = {2023}
}

Comments

20 pages, 18 figures, MNRAS, in press. Please visit www.thesan-project.com for more details

R2 v1 2026-06-28T04:44:07.390Z