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Massive neutrinos and degeneracies in Lyman-alpha forest simulations
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Number of Authors: 82020 (English)In: Journal of Cosmology and Astroparticle Physics, E-ISSN 1475-7516, no 4, article id 025Article in journal (Refereed) Published
Abstract [en]

Using a suite of hydrodynamical simulations with cold dark matter, baryons, and neutrinos, we present a detailed study of the effect of massive neutrinos on the 1-D and 3-D flux power spectra of the Lyman-alpha (Ly alpha) forest. The presence of massive neutrinos in cosmology induces a scale- and time-dependent suppression of structure formation that is strongest on small scales. Measuring this suppression is a key method for inferring neutrino masses from cosmological data, and is one of the main goals of ongoing and future surveys like eBOSS, DES, LSST, Euclid or DESI. The clustering in the Ly alpha forest traces the quasilinear power at late times and on small scales. In combination with observations of the cosmic microwave background, the forest therefore provides some of the tightest constraints on the sum of the neutrino masses. However there is a well-known degeneracy between Sigma m(v) and the amplitude of perturbations in the linear matter power spectrum. We study the corresponding degeneracy in the 1-D flux power spectrum of the Ly alpha forest, and for the first time also study this degeneracy in the 3-D flux power spectrum. We show that the non-linear effects of massive neutrinos on the Lycy forest, beyond the effect of linear power amplitude suppression, are negligible, and this degeneracy persists in the Ly alpha forest observables to a high precision. We discuss the implications of this degeneracy for choosing parametrisations of the Ly alpha forest for cosmological analysis.

Place, publisher, year, edition, pages
2020. no 4, article id 025
Keywords [en]
Lyman alpha forest, cosmological neutrinos, cosmological simulations, neutrino masses from cosmology
National Category
Physical Sciences
Identifiers
URN: urn:nbn:se:su:diva-181875DOI: 10.1088/1475-7516/2020/04/025ISI: 000531476300026Scopus ID: 2-s2.0-85084386907OAI: oai:DiVA.org:su-181875DiVA, id: diva2:1432153
Available from: 2020-05-26 Created: 2020-05-26 Last updated: 2023-03-28Bibliographically approved

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Publisher's full textScopusarXiv:1911.09596

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Rogers, Keir K.

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Department of PhysicsThe Oskar Klein Centre for Cosmo Particle Physics (OKC)
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