4.6 Article

Constraints on the coupling between dark energy and dark matter from CMB data

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1475-7516/2016/04/014

关键词

cosmological parameters from CMBR; dark energy theory; dark matter theory; neutrino properties

资金

  1. Theoretical Astroparticle Physics under the program PRIN - Ministero dell'Istruzione, Universita e della Ricerca (MIUR) [2012CPPYP7]
  2. TAsP (Theoretical Astroparticle Physics)
  3. Istituto Nazionale di Fisica Nucleare (INFN)
  4. Strategic Research Grant: Origin and Detection of Galactic and Extragalactic Cosmic Rays - Torino University and Compagnia di San Paolo

向作者/读者索取更多资源

We investigate a phenomenological non-gravitational coupling between dark energy and dark matter, where the interaction in the dark sector is parameterized as an energy transfer either from dark matter to dark energy or the opposite. The models are constrained by a whole host of updated cosmological data: cosmic microwave background temperature anisotropies and polarization, high-redshift supernovae, baryon acoustic oscillations, redshift space distortions and gravitational lensing. Both models are found to be compatible with all cosmological observables, but in the case where dark matter decays into dark energy, the tension with the independent determinations of H-0 and sigma(8), already present for standard cosmology, increases: this model in fact predicts lower H-0 and higher sigma(8), mostly as a consequence of the higher amount of dark matter at early times, leading to a stronger clustering during the evolution. Instead, when dark matter is fed by dark energy, the reconstructed values of H-0 and sigma(8) nicely agree with their local determinations, with a full reconciliation between high- and low-redshift observations. A non-zero coupling between dark energy and dark matter, with an energy flow from the former to the latter, appears therefore to be in better agreement with cosmological data.

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