4.7 Article

WEIGHING NEUTRINOS WITH COSMIC NEUTRAL HYDROGEN

期刊

ASTROPHYSICAL JOURNAL
卷 814, 期 2, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/814/2/146

关键词

cosmological parameters; galaxies: ISM; large-scale structure of universe; neutrinos; radio lines: ISM

资金

  1. STFC
  2. Large Facilities Capital Fund of BIS
  3. University of Cambridge
  4. Higher Education Funding Council for England
  5. ERC [GA 257670, StG2010-257080]
  6. INFN IS PD51 INDARK
  7. Consorzio per la Fisica-Trieste
  8. STFC [ST/M007065/1, ST/L000636/1, ST/M00418X/1, ST/K00333X/1, ST/J005673/1] Funding Source: UKRI
  9. Science and Technology Facilities Council [ST/K00333X/1, ST/L000636/1, ST/J005673/1, ST/M00418X/1, ST/M007065/1] Funding Source: researchfish

向作者/读者索取更多资源

We investigate the signatures left by massive neutrinos on the spatial distribution of neutral hydrogen (H I) in the post-reionization era by running hydrodynamic simulations that include massive neutrinos as additional collisionless particles. We find that halos in massive/massless neutrino cosmologies host a similar amount of neutral hydrogen, although for a fixed halo mass, on average, the H I mass increases with the sum of the neutrino masses. Our results show that H I is more strongly clustered in cosmologies with massive neutrinos, while its abundance, Omega(H I) (z), is lower. These effects arise mainly from the impact of massive neutrinos on cosmology: they suppress both the amplitude of the matter power spectrum on small scales and the abundance of dark matter halos. Modeling the H I distribution with hydrodynamic simulations at z > 3 and a simple analytic model at z < 3, we use the Fisher matrix formalism to conservatively forecast the constraints that Phase 1 of the Square Kilometre Array will place on the sum of neutrino masses, M-nu = Sigma m(nu). We find that with 10,000 hr of interferometric observations at 3 less than or similar to z less than or similar to 6 from a deep and narrow survey with SKA1-LOW, the sum of the neutrino masses can be measured with an error sigma(M-nu) less than or similar to 0.3 eV (95% CL). Similar constraints can be obtained with a wide and deep SKA1-MID survey at z less than or similar to 3, using the single-dish mode. By combining data from MID, LOW, and Planck, plus priors on cosmological parameters from a Stage IV spectroscopic galaxy survey, the sum of the neutrino masses can be determined with an error sigma(M-nu) similar or equal to 0.06 eV (95% CL).

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