Radiative Transfer Simulations of Ly$α$ Intensity Mapping During Cosmic Reionization Including Sources from Galaxies and the Intergalactic Medium

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Ambrose, Abigail E., Visbal, Eli, Kulkarni, Mihir, McQuinn, Matthew
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912557181173760
author Ambrose, Abigail E.
Visbal, Eli
Kulkarni, Mihir
McQuinn, Matthew
author_facet Ambrose, Abigail E.
Visbal, Eli
Kulkarni, Mihir
McQuinn, Matthew
contents We present new simulations of Lyman-$α$ (Ly$α$) intensity maps that include Ly$α$ radiative transfer in the intergalactic medium (IGM) and all significant sources of Ly$α$ photons. The sources considered include Ly$α$ directly from galaxies, cooling at the edges of ionized bubbles, recombinations within these bubbles, and reprocessing of galaxy continuum emission in the IGM. We also vary astrophysical parameters including the average neutral fraction of the IGM, the dust absorption of Ly$α$ in galaxies, and the ionizing escape fraction. Previous work has suggested that Ly$α$ intensity mapping can be used to constrain the neutral fraction of the IGM when accounting for radiative transfer in the IGM. When radiative transfer is ignored, direct Ly$α$ emission from galaxies has the highest amplitude of power on all scales. When we include radiative transfer in our simulations, we find continuum emission reprocessed as Ly$α$ is comparable to the Ly$α$ emission directly from galaxies on large scales. For high neutral fraction in the IGM, emission from recombinations is comparable to galaxies on large scales. We find that the slope of the power spectrum is sensitive to the neutral fraction of the IGM when radiative transfer is included, suggesting that this may be useful for placing constraints on cosmic reionization. In addition, we find the power of galaxies is decreased across all scales due to dust absorption. We also find the escape fraction must be large for recombinations and bubble edges to contribute significantly to the power. We find the cross power is observable between SPHEREx Ly$α$ intensity maps and a hypothetical galaxy survey is observable with a total signal-to-noise of 4 from $k = 0.035$ Mpc$^{-1}$ to $k = 1$ Mpc$^{-1}$.
format Preprint
id arxiv_https___arxiv_org_abs_2502_18654
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Radiative Transfer Simulations of Ly$α$ Intensity Mapping During Cosmic Reionization Including Sources from Galaxies and the Intergalactic Medium
Ambrose, Abigail E.
Visbal, Eli
Kulkarni, Mihir
McQuinn, Matthew
Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
We present new simulations of Lyman-$α$ (Ly$α$) intensity maps that include Ly$α$ radiative transfer in the intergalactic medium (IGM) and all significant sources of Ly$α$ photons. The sources considered include Ly$α$ directly from galaxies, cooling at the edges of ionized bubbles, recombinations within these bubbles, and reprocessing of galaxy continuum emission in the IGM. We also vary astrophysical parameters including the average neutral fraction of the IGM, the dust absorption of Ly$α$ in galaxies, and the ionizing escape fraction. Previous work has suggested that Ly$α$ intensity mapping can be used to constrain the neutral fraction of the IGM when accounting for radiative transfer in the IGM. When radiative transfer is ignored, direct Ly$α$ emission from galaxies has the highest amplitude of power on all scales. When we include radiative transfer in our simulations, we find continuum emission reprocessed as Ly$α$ is comparable to the Ly$α$ emission directly from galaxies on large scales. For high neutral fraction in the IGM, emission from recombinations is comparable to galaxies on large scales. We find that the slope of the power spectrum is sensitive to the neutral fraction of the IGM when radiative transfer is included, suggesting that this may be useful for placing constraints on cosmic reionization. In addition, we find the power of galaxies is decreased across all scales due to dust absorption. We also find the escape fraction must be large for recombinations and bubble edges to contribute significantly to the power. We find the cross power is observable between SPHEREx Ly$α$ intensity maps and a hypothetical galaxy survey is observable with a total signal-to-noise of 4 from $k = 0.035$ Mpc$^{-1}$ to $k = 1$ Mpc$^{-1}$.
title Radiative Transfer Simulations of Ly$α$ Intensity Mapping During Cosmic Reionization Including Sources from Galaxies and the Intergalactic Medium
topic Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2502.18654