Constraining the neutrino mass using a multitracer combination of two galaxy surveys and cosmic microwave background lensing

Author:

Ballardini Mario1234ORCID,Maartens Roy456

Affiliation:

1. Dipartimento di Fisica e Astronomia, Alma Mater Studiorum Università di Bologna, via Gobetti 93/2, I-40129 Bologna, Italy

2. INAF/OAS Bologna, via Piero Gobetti 101, I-40129 Bologna, Italy

3. INFN, Sezione di Bologna, via Irnerio 46, I-40126 Bologna, Italy

4. Department of Physics & Astronomy, University of the Western Cape, Cape Town 7535, South Africa

5. Institute of Cosmology & Gravitation, University of Portsmouth, Portsmouth PO1 3FX, UK

6. National Institute of Theoretical & Computatiopnal Sciences (NITheCS), Pretoria 2600, South Africa

Abstract

ABSTRACT Measuring the total neutrino mass is one of the most exciting opportunities available with next-generation cosmological data sets. We study the possibility of detecting the total neutrino mass using large-scale clustering in 21 cm intensity mapping and photometric galaxy surveys, together with cosmic microwave background (CMB) information. We include the scale-dependent halo bias contribution due to the presence of massive neutrinos, and use a multitracer analysis in order to reduce cosmic variance. The multitracer combination of an SKAO-MID 21 cm intensity map with stage 4 CMB dramatically shrinks the uncertainty on total neutrino mass to $\sigma (M_\nu) \simeq 45\,$ meV, using only linear clustering information ($k_{\rm max} = 0.1\, h\, \mathrm{Mpc}^{-1}$) and without a prior on optical depth. When we add to the multitracer the clustering information expected from Legacy Survey of Space and Time, the forecast is $\sigma (M_\nu) \simeq 12\,$ meV.

Funder

Advanced Science Institute

National Research Foundation

STFC

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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