From Dark Radiation to Dark Energy: Unified Cosmological Evolution in K-essence Models

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Hauptverfasser: Moreno, Eladio, De-Santiago, Josue
Format: Preprint
Veröffentlicht: 2025
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author Moreno, Eladio
De-Santiago, Josue
author_facet Moreno, Eladio
De-Santiago, Josue
contents We study a class of Unified Dark Matter (UDM) models based on generalized K-essence, where a single scalar field with non-canonical kinetic terms accounts for dark radiation, dark matter, and dark energy. Starting from the purely kinetic Lagrangian proposed by Scherrer (2004), we extend the analysis to quadratic and exponential scalar potentials and explore their phenomenology. All models are implemented in a modified version of \texttt{Hi\_CLASS} and confronted with data from \textit{Planck} 2018, DESI DR1, and Big Bang Nucleosynthesis. The scenarios reproduce the full sequence of cosmic epochs: an early radiation-like phase, a matter-dominated era, and late-time accelerated expansion. The new models predict slightly higher values of the Hubble constant compared to $Λ$CDM, thereby partially alleviating the respective tensions from $\sim 4.4 σ$ to $\sim 3.4 σ$. The quadratic potential requires an ultralight mass that makes it effectively indistinguishable from the Scherrer solution. Overall, generalized K-essence provides a minimal and observationally viable realization of UDM, offering a unified description of the dark sector with distinctive signatures in both early- and late-time cosmology.
format Preprint
id arxiv_https___arxiv_org_abs_2509_25088
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle From Dark Radiation to Dark Energy: Unified Cosmological Evolution in K-essence Models
Moreno, Eladio
De-Santiago, Josue
Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
We study a class of Unified Dark Matter (UDM) models based on generalized K-essence, where a single scalar field with non-canonical kinetic terms accounts for dark radiation, dark matter, and dark energy. Starting from the purely kinetic Lagrangian proposed by Scherrer (2004), we extend the analysis to quadratic and exponential scalar potentials and explore their phenomenology. All models are implemented in a modified version of \texttt{Hi\_CLASS} and confronted with data from \textit{Planck} 2018, DESI DR1, and Big Bang Nucleosynthesis. The scenarios reproduce the full sequence of cosmic epochs: an early radiation-like phase, a matter-dominated era, and late-time accelerated expansion. The new models predict slightly higher values of the Hubble constant compared to $Λ$CDM, thereby partially alleviating the respective tensions from $\sim 4.4 σ$ to $\sim 3.4 σ$. The quadratic potential requires an ultralight mass that makes it effectively indistinguishable from the Scherrer solution. Overall, generalized K-essence provides a minimal and observationally viable realization of UDM, offering a unified description of the dark sector with distinctive signatures in both early- and late-time cosmology.
title From Dark Radiation to Dark Energy: Unified Cosmological Evolution in K-essence Models
topic Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2509.25088