2014

Suite of Hydrodynamical Simulations for the Lyman-Alpha Forest with Massive Neutrinos

Rossi, Graziano, Palanque-Delabrouille, Nathalie, Borde, Arnaud et al.

Understand

The signature left in quasar spectra by the presence of neutral hydrogen in the Universe allows one to constrain the sum of the neutrino masses with improved sensitivity, with respect to laboratory experiments, and may shed a new light on the neutrino mass hierarchy and on the absolute mass scale of neutrinos.

  • Constraints on cosmological parameters and on the dark energy equation of state can also be derived, from a joint parameter estimation procedure.
  • However, this requires a detailed modeling of the line-of-sight power spectrum of the transmitted flux in the Lyman-Alpha (LyA) forest on scales ranging from a few to hundreds of Mpcs, which in turns demands the inclusion and careful treatment of cosmological neutrinos.
  • To this end, we present here a suite of state-of-the-art hydrodynamical simulations with cold dark matter, baryons and massive neutrinos, specifically targeted for modeling the low-density regions of the IGM as probed by the LyA forest at high-redshift.

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