Primordial Bounce-Inflation Scenario to Alleviate Cosmological Tensions and Lensing Anomaly
Hao-Hao Li, Xin-zhe Zhang, Taotao Qiu

TL;DR
This paper proposes a primordial bounce-inflation scenario that slightly alleviates the Hubble and S8 cosmological tensions, fitting observational data better and reducing discrepancies in standard cosmological models.
Contribution
It introduces a novel bounce-inflation model within the ΛCDM framework that reduces cosmological tensions and fits observational data more effectively.
Findings
H0 tension reduced to ~3σ level with extended model
S8 tension effectively eliminated in the extended model
Spectral index n_s close to 0.98, near Harrison-Zel'dovich spectrum
Abstract
We put forward a primordial scenario to alleviate cosmological tensions, i.e. Hubble () tension and tension. Based on flat CDM, the Bounce-Inflation (BI) scenario gives the results that , by using \texttt{Planck 2018} data sets and , by using \texttt{Planck 2018} + \texttt{SPT3G} data sets. These reduce the cosmological tensions slightly. We also take an extended CDM model into account, CDM (BI)+, where is the gravitational lensing amplitude. The results are , fitted by \texttt{Planck 2018} data sets and , $ S_8 =…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Cosmology and Gravitation Theories · Space Science and Extraterrestrial Life
