Observational constraints on axion(s) dark energy with a cosmological constant

The present work deals with a dark energy model that has an oscillating scalar field potential along with a cosmological constant (CC). The oscillating part of the potential represents the contribution of a light axion field in the dark energy that has its origin in the String-Axiverse scenario. The...

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Veröffentlicht in:PHYSICS OF THE DARK UNIVERSE 2023-05, Vol.40, p.101199, Article 101199
Hauptverfasser: Ruchika, Adil, Shahnawaz A., Dutta, Koushik, Mukherjee, Ankan, Sen, Anjan A.
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Sprache:eng
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Zusammenfassung:The present work deals with a dark energy model that has an oscillating scalar field potential along with a cosmological constant (CC). The oscillating part of the potential represents the contribution of a light axion field in the dark energy that has its origin in the String-Axiverse scenario. The model has been confronted with the latest cosmological observations. The results show that a sub-Planckian value of the axion field decay constant is consistent observational data. Furthermore, in terms of the observational data considered in this work, the axion model is preferred over the ΛCDM model in terms of AIC, BIC information criteria as well as in terms of Bayesian evidence. The oscillating feature in the scalar field evolution and in the equation of state for the dark energy can be observed for the allowed parameters space. It is also observed that cluster number counts in this axion model are suppressed compared to the ΛCDM and this suppression is enhanced for the sub-Planckian values for the axion decay constant.
ISSN:2212-6864
2212-6864
DOI:10.1016/j.dark.2023.101199