A measurement of galaxy halo mass from the surrounding H I Lyα absorption

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Abstract

We measure the dark matter halo masses of 〈z〈 ≈ 2.36 UV colour-selected star-forming galaxies by matching the observed median H I Lyα absorption around them, as observed in the spectra of background QSOs, to the absorption around haloes above a given mass in cosmological simulations. Focusing on transverse separations 0-2 proper Mpc (pMpc) and line-of-sight separations 154-616 km s-1, we find a minimum halo mass of log10Mmin/M⊙ = 11.6 ± 0.2, which is in good agreement with published halo mass estimates from clustering analyses. We verified that themeasured halomass is insensitive to a change in the cosmological parameters (WilkinsonMicrowave Anisotropy Probe 1 versusWilkinsonMicrowave Anisotropy Probe 3) and to the inclusion of strong AGN feedback. One unique strength of this method is that it can be used in narrow field galaxy-QSO surveys, i.e. ≈30 × 30 arcsec. In addition, we find that the observed anisotropy in the 2D H I Lyα absorption distribution on scales of 1.5-2 pMpc is consistent with being a consequence of large-scale gas infall into the potential wells occupied by galaxies. © 2013 The Authors. Published by Oxford University Press on behalf of the Royal Astronomical Society.

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Rakic, O., Schaye, J., Steidel, C. C., Booth, C. M., Vecchia, C. D., & Rudie, G. C. (2013). A measurement of galaxy halo mass from the surrounding H I Lyα absorption. Monthly Notices of the Royal Astronomical Society, 433(4), 3103–3114. https://doi.org/10.1093/mnras/stt950

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