English

Holographic Dark Energy Model Characterized by the Conformal-age-like Length

High Energy Physics - Theory 2015-06-04 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Phenomenology

Abstract

A holographic dark energy model characterized by the conformal-age-like length scale L=1a4(t)0tdta3(t)L= \frac{1}{a^4(t)}\int_0^tdt' a^3(t') is motivated from the four dimensional spacetime volume at cosmic time tt in the flat Friedmann-Robertson-Walker universe. It is shown that when the background constituent with constant equation of state wmw_m dominates the universe in the early time, the fractional energy density of the dark energy scales as Ωde94(3+wm)2d2a2\Omega_{de}\simeq \frac94(3+w_m)^2d^2a^2 with the equation of state given by wde23+wmw_{de}\simeq-\frac23 +w_m. The value of wmw_m is taken to be wm1w_m\simeq-1 during inflation, wm=13w_m=\frac13 in radiation-dominated epoch and wm=0w_m=0 in matter-dominated epoch respectively. When the model parameter dd takes the normal value at order one, the fractional density of dark energy is naturally negligible in the early universe, Ωde1\Omega_{de} \ll 1 at a1a \ll 1. With such an analytic feature, the model can be regarded as a single-parameter model like the Λ\LambdaCDM model, so that the present fractional energy density Ωde(a=1)\Omega_{de}(a=1) can solely be determined by solving the differential equation of Ωde\Omega_{de} once dd is given. We further extend the model to the general case in which both matter and radiation are present. The scenario involving possible interaction between the dark energy and the background constituent is also discussed.

Keywords

Cite

@article{arxiv.1202.2590,
  title  = {Holographic Dark Energy Model Characterized by the Conformal-age-like Length},
  author = {Zhuo-Peng Huang and Yue-Liang Wu},
  journal= {arXiv preprint arXiv:1202.2590},
  year   = {2015}
}

Comments

9 pages, typos corrected, published version