English

Constraints on quintessence scalar field models using cosmological observations

General Relativity and Quantum Cosmology 2019-07-24 v2 Cosmology and Nongalactic Astrophysics

Abstract

We consider a varieties of quintessence scalar field models in a homogeneous and isotropic geometry of the universe with zero spatial curvature aiming to provide stringent constraints using a series of cosmological data sets, namely, the cosmic microwave background observations (CMB), baryon acoustic oscillations (BAO), joint light curve analysis (JLA) from supernovae type Ia, redshift space distortions (RSD), and the cosmic chronometers (CC). From the qualitative evolution of the models, we find all of them are able to execute a fine transition from the past decelerating phase to the presently accelerating expansion where in addition, the equation of state of the scalar field (also the effective equation of state) might be close to that of the Λ\LambdaCDM cosmology depending on its free parameters. From the observational analyses, we find that the scalar field parameters are unconstrained irrespective of all the observational datasets. In fact, we find that the quintessence scalar field models are pretty much determined by the CMB observations since any of the external datasets such as BAO, JLA, RSD, CC does not add any constraining power to CMB. Additionally, we observe a strong negative correlation between the parameters H0H_0 (present value of the Hubble parameter), Ωm0\Omega_{m0} (density parameter for the matter sector, i.e., cold dark matter plus baryons) exists, while no correlation between H0H_0, and σ8\sigma_8 (amplitude of the matter fluctuation) are not correlated. We also comment that the present models are unable to reconcile the tension on H0H_0. Finally, we conclude our work with the Bayesian analyses which report that the non-interacting Λ\LambdaCDM model is preferred over all the quintessence scalar field models.

Keywords

Cite

@article{arxiv.1810.08586,
  title  = {Constraints on quintessence scalar field models using cosmological observations},
  author = {Weiqiang Yang and M. Shahalam and Barun Pal and Supriya Pan and Anzhong Wang},
  journal= {arXiv preprint arXiv:1810.08586},
  year   = {2019}
}

Comments

28 pages, 13 captioned figures and 8 tables, revised version, title has been changed; Accepted for publication by Physical Review D

R2 v1 2026-06-23T04:46:09.497Z