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The CMB optical depth constrains the duration of reionization

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arxiv 2505.15899 v1 pith:KJDLW6JC submitted 2025-05-21 astro-ph.CO astro-ph.GA

The CMB optical depth constrains the duration of reionization

classification astro-ph.CO astro-ph.GA
keywords reionizationdurationvaluealphaconstrainsdatadepthforest
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Recently, it was pointed out that invoking a large value of the CMB optical depth, $\tau_{\rm CMB} = 0.09$, could help resolve tensions between DESI DR2 BAO data and the CMB. This is larger than the value of $\tau_{\rm CMB} = 0.058$ measured from the Planck low-$\ell$ polarization data. Traditionally, $\tau_{\rm CMB}$ is thought of as a constraint on reionization's midpoint. However, recent observations and modeling of the Ly$\alpha$ forest of high-$z$ quasars at $5 < z < 6$ have tightly constrained the timing of the last $10-20\%$ of reionization, adding nuance to this interpretation. Here, we point out that fixing reionization's endpoint, in accordance with the latest Ly$\alpha$ forest constraints, renders $\tau_{\rm CMB}$ a sensitive probe of the duration of reionization, as well as its midpoint. We compare low and high values of $\tau_{\rm CMB}$ to upper limits on the patchy kinematic Sunyaev-Zeldovich (pkSZ) effect, another CMB observable that constrains reionization's duration, and find that a value of $\tau_{\rm CMB} = 0.09$ is in $\approx 2\sigma$ tension with existing limits on the pkSZ from the South Pole Telescope.

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Cited by 9 Pith papers

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