Semi-analytical approach to Ly$\alpha$ multiple-scattering in 21-cm signal simulations
Jordan Flitter, Julian B. Mu\~noz, Andrei Mesinger

TL;DR
This paper introduces a semi-analytical method to incorporate Ly$ ext{alpha}$ multiple scattering effects into 21cm signal simulations, improving computational efficiency and accuracy during cosmic dawn.
Contribution
It develops an analytical model for Ly$ ext{alpha}$ photon distance distributions and integrates it into 21cmFAST, capturing multiple scattering effects without heavy radiative transfer simulations.
Findings
Multiple scattering causes about 50% difference in 21-cm power spectrum at high redshifts.
Ly$ ext{alpha}$ multiple scattering does not significantly enhance Ly$ ext{alpha}$ heating.
The analytical model accurately describes photon trajectories governed by a single parameter.
Abstract
A crucial physical quantity in determining the 21-cm signal during cosmic dawn is the inhomogeneous background of Ly photons originating from the first galaxies. As these photons travel through the intergalactic medium, their scattering cross-section is often approximated as a delta function at resonance due to computational cost. That is, photons with emitted wavelengths between Ly and Ly are assumed to travel in straight lines until they redshift into the Ly resonance. However, due to the damping wing in the Ly cross-section, this approximation fails as the frequency of the photon approaches the resonant frequency, resulting in multiple scatterings events that could be separated by non-negligible distances. Some previous works studied this effect of Ly multiple scattering by running computationally heavy radiative-transfer simulations.…
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Taxonomy
TopicsRadio Astronomy Observations and Technology · Superconducting and THz Device Technology · Galaxies: Formation, Evolution, Phenomena
