paper

Hydrogen reionisation ends by : Lyman- optical depth measured by the XQR-30 sample

arXiv:2108.03699 · doi:10.1093/mnras/stac1046

Abstract

The presence of excess scatter in the Ly- forest at , together with the existence of sporadic extended opaque Gunn-Peterson troughs, has started to provide robust evidence for a late end of hydrogen reionisation. However, low data quality and systematic uncertainties complicate the use of Ly- transmission as a precision probe of reionisation's end stages. In this paper, we assemble a sample of 67 quasar sightlines at with high signal-to-noise ratios of per km s spectral pixel, relying largely on the new XQR-30 quasar sample. XQR-30 is a large program on VLT/X-Shooter which obtained deep (SNR per pixel) spectra of 30 quasars at . We carefully account for systematics in continuum reconstruction, instrumentation, and contamination by damped Ly- systems. We present improved measurements of the mean Ly- transmission over . Using all known systematics in a forward modelling analysis, we find excellent agreement between the observed Ly- transmission distributions and the homogeneous-UVB simulations Sherwood and Nyx up to (), and mild tension () at . Homogeneous UVB models are ruled out by excess Ly- transmission scatter at with high confidence (). Our results indicate that reionisation-related fluctuations, whether in the UVB, residual neutral hydrogen fraction, and/or IGM temperature, persist in the intergalactic medium until at least ( Gyr after the Big Bang). This is further evidence for a late end to reionisation.

Accepted for publication in MNRAS. Full measurement datasets are available on the first author's website

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