English

Observational constraints on $f(T)$ theory

General Relativity and Quantum Cosmology 2010-10-12 v5 Cosmology and Nongalactic Astrophysics High Energy Physics - Theory

Abstract

The f(T)f(T) theory, which is an extension of teleparallel, or torsion scalar TT, gravity, is recently proposed to explain the present cosmic accelerating expansion with no need of dark energy. In this Letter, we first perform the statefinder analysis and Om(z)Om(z) diagnostic to two concrete f(T)f(T) models, i.e., f(T)=α(T)nf(T)=\alpha (-T)^n and f(T)=αT(1epT0/T)f(T)=-\alpha T(1-e^{p {T_0}/T}), and find that a crossing of phantom divide line is impossible for both models. This is contrary to an existing result where a crossing is claimed for the second model. We, then, study the constraints on them from the latest Union 2 Type Ia Supernova (Sne Ia) set, the baryonic acoustic oscillation (BAO), and the cosmic microwave background (CMB) radiation. Our results show that at the 95% confidence level Ωm0=0.2720.032+0.036\Omega_{m0}=0.272_{-0.032}^{+0.036}, n=0.040.33+0.22n=0.04_{-0.33}^{+0.22} for Model 1 and Ωm0=0.2720.034+0.036\Omega_{m0}=0.272_{-0.034}^{+0.036}, p=0.020.20+0.31p=-0.02_{-0.20}^{+0.31} for Model 2. A comparison of these two models with the Λ\LambdaCDM by the χMin2/dof\chi^2_{Min}/dof (dof: degree of freedom) criterion indicates that Λ\LambdaCDM is still favored by observations. We also study the evolution of the equation of state for the effective dark energy in the theory and find that Sne Ia favors a phantom-like dark energy, while Sne Ia + BAO + CMB prefers a quintessence-like one.

Keywords

Cite

@article{arxiv.1006.0674,
  title  = {Observational constraints on $f(T)$ theory},
  author = {Puxun Wu and Hongwei Yu},
  journal= {arXiv preprint arXiv:1006.0674},
  year   = {2010}
}

Comments

15 pages, 5 figures; statefinder diagnostic added, Om(z) analysis added; references added; accepted by PLB

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