English

$\Lambda(t)$CDM Model as a Unified Origin of Holographic and Agegraphic Dark Energy Models

Cosmology and Nongalactic Astrophysics 2011-04-04 v1

Abstract

Motivated by the fact that any nonzero Λ\Lambda can introduce a length scale or a time scale into Einstein's theory, rΛ=ctΛ=3/Λr_{\Lambda}=ct_{\Lambda}=\sqrt{3/|\Lambda|}. Conversely, any cosmological length scale or time scale can introduce a Λ(t)\Lambda (t), Λ(t)=3/rΛ2(t)=3/(c2tΛ2(t))\Lambda(t)=3/r^2_{\Lambda}(t)=3/(c^2t^2_{\Lambda}(t)). In this letter, we investigate the time varying Λ(t)\Lambda(t) corresponding to the length scales, including the Hubble horizon, the particle horizon and the future event horizon, and the time scales, including the age of the universe and the conformal time. It is found out that, in this scenario, the Λ(t)\Lambda(t)CDM model can be taken as the unified origin of the holographic and agegraphic dark energy models with interaction between the matter and the dark energy, where the interacting term is determined by Q=ρ˙ΛQ=-\dot{\rho}_{\Lambda}. We place observational constraints on the Λ(t)\Lambda(t)CDM models originating from different cosmological length scales and time scales with the recently compiled "Union2 compilation" which consists of 557 Type Ia supernovae (SNIa) covering a redshift range 0.015z1.40.015\leq z \leq 1.4. In conclusion, an accelerating expansion universe can be derived in the cases taking the Hubble horizon, the future event horizon, the age of the universe and the conformal time as the length scale or the time scale.

Keywords

Cite

@article{arxiv.1103.2512,
  title  = {$\Lambda(t)$CDM Model as a Unified Origin of Holographic and Agegraphic Dark Energy Models},
  author = {Yun Chen and Zong-Hong Zhu and Lixin Xu and J. S. Alcaniz},
  journal= {arXiv preprint arXiv:1103.2512},
  year   = {2011}
}

Comments

13 pages, 6 figures. Accepted for publication in PLB