English

Holographic Dark Energy with Cosmological Constant

Cosmology and Nongalactic Astrophysics 2015-08-12 v2

Abstract

Inspired by the multiverse scenario, we study a heterotic dark energy model in which there are two parts, the first being the cosmological constant and the second being the holographic dark energy, thus this model is named the Λ\LambdaHDE model. By studying the Λ\LambdaHDE model theoretically, we find that the parameters dd and Ωhde\Omega_{hde} are divided into a few domains in which the fate of the universe is quite different. We investigate dynamical behaviors of this model, and especially the future evolution of the universe. We perform fitting analysis on the cosmological parameters in the Λ\LambdaHDE model by using the recent observational data. We find the model yields χmin2=426.27\chi^2_{\rm min}=426.27 when constrained by Planck+SNLS3+BAO+HST\rm Planck+SNLS3+BAO+HST, comparable to the results of the HDE model (428.20) and the concordant Λ\LambdaCDM model (431.35). At 68.3\% CL, we obtain 0.07<ΩΛ0<0.68-0.07<\Omega_{\Lambda0}<0.68 and correspondingly 0.04<Ωhde0<0.790.04<\Omega_{hde0}<0.79, implying at present there is considerable degeneracy between the holographic dark energy and cosmological constant components in the Λ\LambdaHDE model.

Keywords

Cite

@article{arxiv.1502.01156,
  title  = {Holographic Dark Energy with Cosmological Constant},
  author = {Yazhou Hu and Miao Li and Nan Li and Zhenhui Zhang},
  journal= {arXiv preprint arXiv:1502.01156},
  year   = {2015}
}

Comments

17 pages, 6 figures