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A comprehensive parametrization approach for the Hubble parameter in scalar field dark energy models

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arxiv 2311.02727 v1 pith:KLAGK2TW submitted 2023-11-05 astro-ph.CO

A comprehensive parametrization approach for the Hubble parameter in scalar field dark energy models

classification astro-ph.CO
keywords parameterapproachdarkenergyhubblecomprehensivecosmicfield
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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This study proposes a novel parametrization approach for the dimensionless Hubble parameter i.e. $E^2(z)=A(z)+\beta (1+\gamma B(z))$ in the context of scalar field dark energy models. The parameterization is characterized by two functions, $A(z)$ and $B(z)$, carefully chosen to capture the behavior of the Hubble parameter at different redshifts. We explore the evolution of cosmological parameters, including the deceleration parameter, density parameter, and equation of state parameter. Observational data from Cosmic Chronometers (CC), Baryonic Acoustic Oscillations (BAO), and the Pantheon+ datasets are analyzed using MCMC methodology to determine model parameters. The results are compared with the standard $\Lambda$CDM model using the Planck observations. Our approach provides a model-independent exploration of dark energy, contributing to a comprehensive understanding of late-time cosmic acceleration.

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  1. Observational tests of \texorpdfstring{$\Lambda(t)$}{Lambda(t)} cosmology in light of DESI DR2

    physics.gen-ph 2026-04 unverdicted novelty 2.0

    MCMC constraints on two Lambda(t) models with DESI DR2, CC, and Pantheon+ data yield H0 ~72.5-73 km/s/Mpc, Omega_m0 near standard values in joint fits, and n~0.3 indicating mild deviation from LambdaCDM.