English

Confronting the IR Fixed Point Cosmology with High Redshift Observations

Astrophysics 2009-11-07 v2 General Relativity and Quantum Cosmology High Energy Physics - Theory

Abstract

We use high-redshift type Ia supernova and compact radio source data in order to test the infrared (IR) fixed point model of the late Universe which was proposed recently. It describes a cosmology with a time dependent cosmological constant and Newton constant whose dynamics arises from an underlying renormalization group flow near an IR-attractive fixed point. Without any finetuning or quintessence field it yields ΩM=ΩΛ=1/2\Omega_{\rm M}=\Omega_{\Lambda}=1/2. Its characteristic t4/3t^{4/3}-dependence of the scale factor leads to a distance-redshift relation whose predictions are compared both to the supernova and to the radio source data. According to the χ2\chi^2 test, the fixed point model reproduces the data at least as well as the best-fit (Friedmann-Robertson-Walker) standard cosmology.Furthermore, we extend the original fixed point model by assuming that the fixed point epoch is preceded by an era with constant GG and Λ\Lambda. By means of a Monte Carlo simulation we show that the data expected from the forthcoming SNAP satellite mission could detect the transition to the fixed point regime provided it took place at a redshift of less than about 0.5.

Keywords

Cite

@article{arxiv.astro-ph/0303150,
  title  = {Confronting the IR Fixed Point Cosmology with High Redshift Observations},
  author = {E. Bentivegna and A. Bonanno and M. Reuter},
  journal= {arXiv preprint arXiv:astro-ph/0303150},
  year   = {2009}
}

Comments

45 pages, revtex4, 8 figures, to appear on JCAP