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Smoothing the H₀ tension with a dynamical dark energy model

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arxiv 2301.04200 v2 pith:ZLFMUF6R submitted 2023-01-10 astro-ph.CO

Smoothing the H₀ tension with a dynamical dark energy model

classification astro-ph.CO
keywords sigmatensionlambdamodelcosmologymeasurementsdarkdata
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The discrepancy between Planck data and direct measurements of the current expansion rate $H_0$ and the matter fluctuation amplitude $S_8$ has become one of the most intriguing puzzles in cosmology nowadays. The $H_0$ tension has reached $4.2\sigma$ in the context of standard cosmology i.e $\Lambda$CDM. Therefore, explanations to this issue are mandatory to unveil its secrets. Despite its success, $\Lambda$CDM is unable to give a satisfying explanation to the tension problem. Unless some systematic errors might be hidden in the observable measurements, physics beyond the standard model of cosmology must be advocated. In this perspective, we study a phantom dynamical dark energy model as an alternative to $\Lambda$CDM in order to explain the aforementioned issues. This phantom model is characterised by one extra parameter, $\Omega_{pdde}$, compared to $\Lambda$CDM. We obtain a strong positive correlation between $H_0$ and $\Omega_{pdde}$, for all data combinations. Using Planck measurements together with BAO and Pantheon, we find that the $H_0$ and the $S_8$ tensions are $3\sigma$ and $2.6\sigma$, respectively. By introducing a prior on the absolute magnitude, $M_B$, of the SN Ia, the $H_0$ tension decreases to $2.27\sigma$ with $H_0 = 69.76_{-0.82}^{+0.75}$ km s$^{-1}$ Mpc$^{-1}$ and the $S_8$ tension reaches the value $2.37\sigma$ with $S_8 =0.8269_{-0.012}^{+0.011}$.

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Cited by 3 Pith papers

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  1. Saturation Mechanisms in the Interacting Dark Sector

    astro-ph.CO 2026-04 unverdicted novelty 6.0

    Nonlinear dark-sector interaction models with a half-saturation sparseness scale are observationally preferred over their linear counterparts at >95% confidence for two of three cases.

  2. Effective field theory interpretation of ATLAS measurements involving the Higgs boson, electroweak bosons and the top quark

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    A simultaneous fit to multiple ATLAS datasets constrains 48 SMEFT Wilson coefficients and matches subsets to 2HDM and heavy-vector models, finding consistency with the Standard Model.

  3. Effective field theory interpretation of ATLAS measurements involving the Higgs boson, electroweak bosons and the top quark

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    Three nonlinear interacting dark energy models with a saturation ('sparseness') scale are constrained against late-time cosmological data, showing mild preference for nonzero sparseness but no decisive improvement over ΛCDM.