English

A note on holographic dark energy with varying $c^2$ term

General Physics 2017-06-06 v1 High Energy Physics - Theory

Abstract

We reconsider the holographic dark energy (HDE) model with a slowly time varying c2(z) c^2(z) parameter in the energy density, namely ρD=3Mp2c2(z)/L2\rho_D=3M_p^2 c^2(z)/L^2, where LL is the IR cutoff and zz is the redshift parameter. As the system's IR cutoff we choose the Hubble radius and the Granda-Oliveros (GO) cutoffs. The latter inspired by the Ricci scalar curvature. We derive the evolution of the cosmological parameters such as the equation of state and the deceleration parameters as the explicit functions of the redshift parameter zz. Then, we plot the evolutions of these cosmological parameters in terms of the redshift parameter during the history of the universe. Interestingly enough, we observe that by choosing L=H1L=H^{-1} as the IR cutoff for the HDE with time varying c2(z) c ^2(z) term, the present acceleration of the universe expansion can be achieved, even in the absence of interaction between dark energy and dark matter. This is in contrast to the usual HDE model with constant c2c^2 term, which leads to a wrong equation of state, namely that for dust wD=0w_D=0, when the IR cutoff is chosen the Hubble radius.

Keywords

Cite

@article{arxiv.1612.03040,
  title  = {A note on holographic dark energy with varying $c^2$ term},
  author = {A. Sheykhi and S. Ghaffari and N. Roshanshah},
  journal= {arXiv preprint arXiv:1612.03040},
  year   = {2017}
}

Comments

14 pages, 13 figures