Holographic Ricci dark energy: Current observational constraints, quintom feature, and the reconstruction of scalar-field dark energy
Xin Zhang

TL;DR
This paper constrains holographic Ricci dark energy using current observational data, confirming its quintom behavior and reconstructing scalar-field models to understand the universe's fate.
Contribution
It provides the first observational constraints on the holographic Ricci dark energy parameter and explores its scalar-field reconstruction based on these constraints.
Findings
Best-fit parameter α=0.359 with uncertainties
Dark energy exhibits quintom behavior according to data
Scalar-field reconstruction aligns with holographic Ricci model
Abstract
In this work, we consider the cosmological constraints on the holographic Ricci dark energy proposed by Gao et al. [Phys. Rev. D 79, 043511 (2009)], by using the observational data currently available. The main characteristic of holographic Ricci dark energy is governed by a positive numerical parameter in the model. When , the holographic Ricci dark energy will exhibit a quintomlike behavior; i.e., its equation of state will evolve across the cosmological-constant boundary . The parameter can be determined only by observations. Thus, in order to characterize the evolving feature of dark energy and to predict the fate of the universe, it is of extraordinary importance to constrain the parameter by using the observational data. In this paper, we derive constraints on the holographic Ricci dark energy model from the latest observational data…
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