A first direct measurement of the intergalactic medium temperature around a quasar at z=6
James S. Bolton (Melbourne), George D. Becker (IoA/KICC), J. Stuart B., Wyithe (Melbourne), Martin G. Haehnelt (IoA/KICC), Wallace L.W. Sargent, (Caltech)

TL;DR
This study provides the first direct measurement of the intergalactic medium temperature around a z=6 quasar, offering new insights into the timing of hydrogen reionisation and the thermal history of the universe at high redshift.
Contribution
It introduces a novel method of measuring IGM temperature at z=6 using high-resolution spectra and detailed modeling, extending constraints to earlier cosmic times.
Findings
Measured IGM temperature at z=6: T_0=23600±6900K.
Placed upper limits on hydrogen reionisation redshift: z_H<9.0 at 68% confidence.
Provided constraints on the timing of reionisation depending on ionising source spectra.
Abstract
The thermal state of the intergalactic medium (IGM) provides an indirect probe of both the HI and HeII reionisation epochs. Current constraints on the IGM temperature from the Lya forest are restricted to the redshift range 2<z<4.5, limiting the ability to probe the thermal memory of HI reionisation toward higher redshift. In this work, we present the first direct measurement of the IGM temperature around a z=6 quasar by analysing the Doppler widths of Lya absorption lines in the proximity zone of SDSS J0818+1722. We use a high resolution (R= 40000) Keck/HIRES spectrum in combination with detailed numerical modelling to obtain the temperature at mean density, T_0=23600\pm^5000_6900K (\pm^9200_9300K) at 68 (95) per cent confidence assuming a prior probability 13500K<T_0<38500 K following HI and HeII reionisation. This enables us to place an upper limit on the redshift of HI reionisation,…
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