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September 1, 2024Journal of Cosmology and Astroparticle Physics18 citationsOpen Access

Interacting ultralight dark matter and dark energy and fits to cosmological data in a field theory approach

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AAAmin AboubrahimPNPran Nath

Key Points

  • The model suggests dark matter and dark energy as dynamical fields with interactions, enhancing cosmological understanding.
  • Using Bayesian inference on multiple datasets, constraints on dark matter mass and interaction strengths were established.
  • This work includes a comprehensive study of background evolution and linear perturbations of the proposed fields' dynamics. Their findings may address significant tensions in current cosmological models, particularly the Hubble tension.

Abstract

Abstract The description of dark matter as a pressure-less fluid and of dark energy as a cosmological constant, both minimally coupled to gravity, constitutes the basis of the concordance ΛCDM model. However, the concordance model is based on using equations of motion directly for the fluids with constraints placed on their sources, and lacks an underlying Lagrangian. In this work, we propose a Lagrangian model of two spin zero fields describing dark energy and dark matter with an interaction term between the two along with self-interactions. We study the background evolution of the fields as well as their linear perturbations, suggesting an alternative to ΛCDM with dark matter and dark energy being fundamental dynamical fields. The parameters of the model are extracted using a Bayesian inference tool based on multiple cosmological data sets which include those of Planck (with lensing), BAO, Pantheon, SH0ES, and WiggleZ. Using these data, we set constraints on the dark matter mass and the interaction strengths. Furthermore, we find that the model is able to alleviate the Hubble tension for some data sets while also resolving the S 8 tension.

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Cite This Study

Aboubrahim et al. (2024) studied this question.

synapsesocial.com/papers/68e59c4cb6db6435875365fehttps://doi.org/10.1088/1475-7516/2024/09/076
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