Can the late dark energy parameterization reconcile the Hubble tension?

  • In this study, we constructed ten dark energy models to test whether they can reconcile the Hubble tension and how much it is affected by parameterization. To establish a fair test, the models are diverse, encompassing fractional, logarithmic, exponential, and inverse exponential forms as well as several non-parameterized models. The dataset we used includes the NPIPE pipeline of cosmic microwave background (CMB) power-spectrum data from Planck2020, Pantheon+ samples from Supernovae Type Ia, and baryon acoustic oscillations. The MCMC calculations imply dark energy transferring from $ w< -1 $ to $ w > -1 $ for the four parameterized dark energy models. However, these models cannot adequately reconcile the Hubble tension. Notably, we found that phantom-like dark energy with $ w < -1 $ can achieve the greatest reduction in the Hubble tension to $ 0.1808\sigma $ . However, AIC analysis indicates that this alleviation is at the cost of high AIC. We also investigated the effect of constructions on the derivative of the equation of state $ {\rm d}w/{\rm d}a $ , cosmic density parameter, CMB power spectrum $ C^{TT} $ , and matter spectra $ P(k) $ . We also found that the Hubble tension may be related to the reionization process.
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Ming-Jian Zhang, Li Chen, Maoyou Yang and Junmei Wang. Whether the late dark energy parameterization can reconcile the Hubble tension?[J]. Chinese Physics C. doi: 10.1088/1674-1137/ad3f95
Ming-Jian Zhang, Li Chen, Maoyou Yang and Junmei Wang. Whether the late dark energy parameterization can reconcile the Hubble tension?[J]. Chinese Physics C. doi:10.1088/1674-1137/ad3f95 shu
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Received: 2024-01-14
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