A hidden reionization prior biases cosmological inference
Abstract
Precision cosmology assumes that cosmic reionization was a single smooth transition. We show that this assumption is in tension with current observations: the Planck optical depth, patchy kinetic Sunyaev--Zel'dovich (PkSZ)limits from SPT and ACT, and the Ly forest endpoint cannot be simultaneously reproduced by any viable monotonic ionization history. Non-parametric reconstructions and Planck EE polarization provide independent support for an additional ionization component at . Incorporating this early phase relaxes the upper bound on the summed neutrino mass to ~eV ( CL) and shifts toward values preferred by weak-lensing surveys, both consequences of the standard -- degeneracy. These shifts arise from relaxing a hidden prior on reionization shape rather than from new physics, and identify reionization shape as an implicit prior in cosmological inference. Next generation of CMB and 21~cm experiments will be able to test this directly,which will convert what has been an unflagged systematic on and into a quantified statistical uncertainty.
Keywords
Cite
@article{arxiv.2606.27903,
title = {A hidden reionization prior biases cosmological inference},
author = {Zihan Wang and Huanyuan Shan},
journal= {arXiv preprint arXiv:2606.27903},
year = {2026}
}