4.6 Article

2021-H0 odyssey: closed, phantom and interacting dark energy cosmologies

Journal

Publisher

IOP Publishing Ltd
DOI: 10.1088/1475-7516/2021/10/008

Keywords

baryon acoustic oscillations; cosmological parameters from CMBR; cosmological perturbation theory; dark energy theory

Funding

  1. National Natural Science Foundation of China [12175096, 11705079]
  2. Liaoning Revitalization Talents Program [XLYC1907098]
  3. Science and Engineering Research Board [MTR/2018/000940]
  4. Institute of Advanced Study at Durham University
  5. Spanish grants [FPA2017-85985-P, PROMETEO/2019/083]
  6. European ITN project HIDDeN [H2020-MSCA-ITN-2019//860881-HIDDeN]

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Current cosmological data analyses show that a closed universe and interacting scenarios are attractive options for resolving the Hubble constant tension. However, the viability of these scenarios as global solutions to cosmological tensions may be compromised when considering other possible cosmological observations.
Up-to-date cosmological data analyses have shown that (sigma) a closed universe is preferred by the Planck data at more than 99% CL, and (b) interacting scenarios offer a very compelling solution to the Hubble constant tension. In light of these two recent appealing scenarios, we consider here an interacting dark matter-dark energy model with a non-zero spatial curvature component and a freely varying dark energy equation of state in both the quintessential and phantom regimes. When considering Cosmic Microwave Background data only, a phantom and closed universe can perfectly alleviate the Hubble tension, without the necessity of a coupling among the dark sectors. Accounting for other possible cosmological observations compromises the viability of this very attractive scenario as a global solution to current cosmological tensions, either by spoiling its effectiveness concerning the H-0 problem, as in the case of Supernovae Ia data, or by introducing a strong disagreement in the preferred value of the spatial curvature, as in the case of Baryon Acoustic Oscillations.

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