Constraints on the temperature of the intergalactic medium at z=8.4 with 21-cm observations
arXiv:1509.02158 · doi:10.1093/mnras/stv2618
Abstract
We compute robust lower limits on the spin temperature, , of the intergalactic medium (IGM), implied by the upper limits on the 21-cm power spectrum recently measured by PAPER-64. Unlike previous studies which used a single epoch of reionization (EoR) model, our approach samples a large parameter space of EoR models: the dominant uncertainty when estimating constraints on . Allowing to be a free parameter and marginalizing over EoR parameters in our Markov Chain Monte Carlo code 21CMMC, we infer (corresponding approximately to ) for a mean IGM neutral fraction of . We further improve on these limits by folding-in additional EoR constraints based on: (i) the dark fraction in QSO spectra, which implies a strict upper limit of ; and (ii) the electron scattering optical depth, measured by the Planck satellite. By restricting the allowed EoR models, these additional observations tighten the approximate lower limits on the spin temperature to K. Thus, even such preliminary 21-cm observations begin to rule out extreme scenarios such as `cold reionization', implying at least some prior heating of the IGM. The analysis framework developed here can be applied to upcoming 21-cm observations, thereby providing unique insights into the sources which heated and subsequently reionized the very early Universe.
7 pages, 1 figure, accepted to MNRAS (matches online version)
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