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Non-linearities in the Lyman-α forest and in its cross-correlation with dark matter halos

  • Jahmour J Givans
  • , Andreu Font-Ribera
  • , Anže Slosar
  • , Louise Seeyave
  • , Christian Pedersen
  • , Keir K Rogers
  • , Mathias Garny
  • , Diego Blas
  • , Vid Iršič

Research output: Contribution to journalArticlepeer-review

14 Citations (Scopus)

Abstract

Three-dimensional correlations of the Lyman-α (Lyα) forest and cross correlations between the Lyα forest and quasars have been measured on large scales, allowing a precise measurement of the baryon acoustic oscillation (BAO) feature at redshifts z > 2. These 3D correlations are often modelled using linear perturbation theory, but full-shape analyses to extract cosmological information beyond BAO will require more realistic models capable of describing non-linearities present at smaller scales. We present a measurement of the Lyα forest flux power spectrum from large hydrodynamic simulations — the Sherwood simulations — and compare it to different models describing the small-scale deviations from linear theory. We confirm that the model presented in Arinyo-i-Prats et al. (2015) fits the measured 3D power up to k = 10 h Mpc-1 with an accuracy better than 5%, and show that the same model can also describe the 1D correlations with similar precision. We also present, for the first time, an equivalent study for the cross-power spectrum of halos with the Lyα forest, and we discuss different challenges we face when modelling the cross-power spectrum beyond linear scales. We make all our measured power spectra public in https://github.com/andreufont/sherwoo_p3d. This study is a step towards joint analyses of 1D and 3D flux correlations, and towards using the quasar-Lyα cross-correlation beyond BAO analyses.

Original languageEnglish
Article number070
JournalJournal of Cosmology and Astroparticle Physics
Volume2022
Issue number9
DOIs
Publication statusPublished - 1 Sept 2022

Keywords

  • Lyman alpha forest
  • power spectrum

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