English

New Constraints from High Redshift Supernovae and Lensing Statistics upon Scalar Field Cosmologies

Astrophysics 2009-10-31 v1

Abstract

We explore the implications of gravitationally lensed QSOs and high-redshift SNe Ia observations for spatially flat cosmological models in which a classically evolving scalar field currently dominates the energy density of the Universe. We consider two representative scalar field potentials that give rise to effective decaying Λ\Lambda (``quintessence'') models: pseudo-Nambu-Goldstone bosons (V(ϕ)=M4(1+cos(ϕ/f))V(\phi)=M^4(1+\cos (\phi /f)) ) and an inverse power-law potential (V(ϕ)=M4+αϕαV(\phi)=M^{4+\alpha}\phi ^{-\alpha}). We show that a large region of parameter space is consistent with current data if Ωm0>0.15\Omega_{m0} > 0.15. On the other hand, a higher lower bound for the matter density parameter suggested by large-scale galaxy flows, Ωm0>0.3\Omega_{m0} > 0.3, considerably reduces the allowed parameter space, forcing the scalar field behavior to approach that of a cosmological constant.

Keywords

Cite

@article{arxiv.astro-ph/0001354,
  title  = {New Constraints from High Redshift Supernovae and Lensing Statistics upon Scalar Field Cosmologies},
  author = {Ioav Waga and Joshua A. Frieman},
  journal= {arXiv preprint arXiv:astro-ph/0001354},
  year   = {2009}
}

Comments

6 pages, 2 figures, submitted to PRD