Constraining reionization with the first measurement of the cross-correlation between the CMB optical-depth fluctuations and the Compton y-map
Toshiya Namikawa, Anirban Roy, Blake D. Sherwin, Nicholas Battaglia,, David N. Spergel

TL;DR
This paper introduces a novel CMB-based method to study reionization by measuring the cross-correlation between optical depth fluctuations and the Compton y-map, providing new constraints on ionized bubble temperatures.
Contribution
It presents the first measurement of the cross-correlation between CMB optical-depth fluctuations and the y-map, offering a new probe of reionization and constraints on bubble temperatures.
Findings
First CMB-only upper limit on ionized bubble temperature: T_b < 7.0×10^5 K (2σ).
Forecasts show high signal-to-noise ratios for future CMB experiments like CMB-S4 and CMB-HD.
Predicted accurate measurement of reionization parameters, including bubble temperature and size, with future data.
Abstract
We propose a new reionization probe that uses cosmic microwave background (CMB) observations; the cross-correlation between fluctuations in the CMB optical depth which probes the integrated electron density, , and the Compton -map which probes the integrated electron pressure. This cross-correlation is much less contaminated than the -map power spectrum by late-time cluster contributions. In addition, this cross-correlation can constrain the temperature of ionized bubbles while the optical-depth fluctuations and kinetic SZ effect can not. We measure this new observable using a Planck -map as well as a map of optical-depth fluctuations that we reconstruct from Planck CMB temperature data. We use our measurements to derive a first CMB-only upper limit on the temperature inside ionized bubbles, K (). We also present future…
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