Generalized Holographic Dark Energy and its Observational Constraints
Abstract
In the original holographic dark energy (HDE) model, the dark energy density is proposed to be , with is a dimensionless constant characterizing the properties of the HDE. In this work, we propose the generalized holographic dark energy (GHDE) model by considering the parameter as a redshift-dependent function . We derive all the physical quantities of the GHDE model analytically, and fit the by trying four kinds of parametrizations. The cosmological constraints of the are obtained from the joint analysis of the present SNLS3+BAO+CMB+ data. We find that, compared with the original HDE model, the GHDE models can provide a better fit to the data. For example, the GHDE model with JBP-type can reduce the of the HDE model by 2.16. We also find that, unlike the original HDE model with a phantom-like behavior in the future, the GHDE models can present many more different possibilities, i.e., it allows the GHDE in the future to be either quintessence like, cosmological constant like, or phantom like, depending on the forms of .
Keywords
Cite
@article{arxiv.1202.5163,
title = {Generalized Holographic Dark Energy and its Observational Constraints},
author = {Zhenhui Zhang and Miao Li and Xiao-Dong Li and Shuang Wang and Wen-Shuai Zhang},
journal= {arXiv preprint arXiv:1202.5163},
year = {2012}
}
Comments
22 pages, 7 figures, 2 tables, published in MPLA. arXiv admin note: substantial text overlap with arXiv:1106.4116