cosmology

Radio Recombination Line Contamination in Post-Reionization 21 cm Intensity Mapping

arXiv:2607.26180

summary

The paper evaluates how radio recombination lines (RRLs) could contaminate post‑reionization 21 cm intensity‑mapping measurements, develops a formalism to predict their impact on the 21 cm power spectrum, and finds the resulting bias on BAO distance measurements to be negligible for percent‑level cosmology.

Abstract

We explore radio recombination line (RRL) contamination in post-reionization 21 cm intensity mapping observations. We develop a formalism to estimate the contamination of the 21 cm auto-power spectrum from the myriad of RRL lines that redshift into a 21 cm map and predict contamination of the 21 cm power spectrum at all redshifts. At , extrapolation of the conservative upper-bound model of Petrovic & Oh (2011) predicts high contamination to the 21 cm power spectrum, whereas our empirically-calibrated models suggest contamination several orders of magnitude smaller. We also estimate the contribution from carbon RRLs and find it to be subdominant. We find the RRL contamination is highly oscillatory in wavenumber, owing to the dominant contamination from RRLs emitted close in physical space to the 21 cm emission. These oscillations could in principle bias distance measurements derived from Baryon Acoustic Oscillations (BAO), a key science driver of post-reionization 21 cm intensity mapping. We find the shift in the BAO extrema is at least two orders of magnitude smaller than relevant for percent-precision cosmology from BAO.

27 pages, 7 figures

Topics & keywords

#21 cm intensity mapping#radio recombination lines#power spectrum contamination#baryon acoustic oscillations#post-reionizationradio recombination linesRRL contamination21 cm auto-power spectrumBAO biasredshifted line foregrounds