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What it Takes to Measure Reionization with Fast Radio Bursts

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arxiv 2107.14242 v3 pith:KJORWGBE submitted 2021-07-29 astro-ph.CO astro-ph.HEastro-ph.IM

classification astro-ph.COastro-ph.HEastro-ph.IM
keywords reionizationfrbsradioburstsconstrainconstraintscosmologicaldepth
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abstract

Fast Radio Bursts (FRBs) are extra-galactic radio transients which exhibit a distance-dependent dispersion of their signal, and thus can be used as cosmological probes. In this article we, for the first time, apply a model-independent approach to measure reionization from synthetic FRB data assuming these signals are detected beyond redshift 5. This method allows us to constrain the full shape of the reionization history as well as the CMB optical depth $\tau$ while avoiding the problems of commonly used model-based techniques. 100 localized FRBs, originating from redshifts 5-15, could constrain (at 68% confidence level) the CMB optical depth to within 11%, and the midpoint of reionization to 4%, surpassing current state-of-the-art CMB bounds and quasar limits. Owing to the higher numbers of expected FRBs at lower redshifts, the $\tau$ constraints are asymmetric (+14%, -7%) providing a much stronger lower limit. Finally, we show that the independent constraints on reionization from FRBs will improve limits on other cosmological parameters such as the amplitude of the power spectrum of primordial fluctuations.

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Forward citations

Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Two new highly scattered fast radio bursts: evidence for scatter broadening by the circumsource medium

    astro-ph.HE 2026-08 conditional novelty 6.0 of 10

    FRB240312D is the first highly scattered FRB whose scattering screen is localized to within about 8 pc of the source, with the two new bursts implying a rate consistent with shorter FRBs.

  2. A New Boundary Condition on Reionization

    astro-ph.CO 2025-09 conditional novelty 6.0 of 10

    A zero-lag Pearson correlation between 21-cm and line-intensity maps is predicted to drop sharply at ionized fractions of 1-10%, providing a novel marker for the onset of reionization.

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