English

The Coincidence Problem and Interacting Holographic Dark Energy

Astrophysics 2008-11-26 v3

Abstract

We study the dynamical behaviour of the interacting holographic dark energy model whose interaction term is Q=3H(\lamdρd+\lamcρc)Q=3H(\lam_d\rho_d + \lam_c\rho_c), where ρd\rho_d and ρc\rho_c are the energy density of dark energy and CDM respectively. To satisfy the observational constraints from SNIa, CMB shift parameter and BAO measurement, if \lamc=\lamd\lam_c = \lam_d or \lamd,\lamc>0\lam_d, \lam_c >0, the cosmic evolution will only reach the attractor in the future and the ratio ρc/ρd\rho_c/\rho_d cannot be slowly varying at present. Since the cosmic attractor can be reached in the future even when the present values of the cosmological parameters do not satisfy the observational constraints, the coincidence problem is not really alleviated in this case. However, if \lamc\lamd\lam_c \neq \lam_d and they are allowed to be negative, the ratio ρc/ρd\rho_c/\rho_d can be slowly varying at present and the cosmic attractor can be reached near the present epoch. Hence, the alleviation of the coincidence problem is attainable in this case. The alleviation of coincidence problem in this case is still attainable when confronting this model to SDSS data.

Keywords

Cite

@article{arxiv.0801.1755,
  title  = {The Coincidence Problem and Interacting Holographic Dark Energy},
  author = {Khamphee Karwan},
  journal= {arXiv preprint arXiv:0801.1755},
  year   = {2008}
}

Comments

16 pages, 5 figures; revised version to appear in JCAP; references added

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