Detection of Extended He II Reionization in the Temperature Evolution of the Intergalactic Medium
George D. Becker (1), James S. Bolton (2), Martin G. Haehnelt (1),, Wallace L. W. Sargent (3) ((1) KICC/IoA Cambridge, (2) Melbourne, (3), Caltech)

TL;DR
This study measures the temperature evolution of the intergalactic medium using Lyman-alpha forest data, providing evidence for extended He II reionization starting at z > 4.4 and ending around z ~ 3, revealing its significant thermal impact.
Contribution
The paper introduces a new curvature-based statistic to measure IGM temperature from high-resolution spectra, enabling more precise detection of He II reionization effects.
Findings
Temperature increases from ~8000 K at z ~ 4.4 to >12000 K at z ~ 2.8.
Evidence suggests He II reionization begins at z > 4.4.
Reionization heats the IGM over an extended redshift interval.
Abstract
We present new measurements of the temperature of the intergalactic medium (IGM) derived from the Lyman-alpha forest over 2.0 < z < 4.8. The small-scale structure in the forest of 61 high-resolution QSO spectra is quantified using a new statistic, the curvature, and the conversion to temperature calibrated using a suite of hydrodynamic simulations. At each redshift we focus on obtaining the temperature at an optimal overdensity probed by the Lyman-alpha forest, T(Delta), where the temperature is nearly a one-to-one function of the curvature regardless of the slope of the temperature-density relation. The median 2-sigma statistical uncertainty in these measurements is 8 per cent, though there may be comparable systematic errors due to the unknown amount of Jeans smoothing in the IGM. We use our T(Delta) results to infer the temperature at the mean density, T0. Even for a maximally steep…
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