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A Study of Holographic Dark Energy Models in Chern-Simon Modified Gravity

General Relativity and Quantum Cosmology 2017-08-31 v1

Abstract

This paper is devoted to study some holographic dark energy models in the context of Chern-Simon modified gravity by considering FRW universe. We analyze the equation of state parameter using Granda and Oliveros infrared cut-off proposal which describes the accelerated expansion of the universe under the restrictions on the parameter α\alpha. It is shown that for the accelerated expansion phase 1<ωΛ<13 -1<\omega_{\Lambda}<-\frac{1}{3}, the parameter α\alpha varies according as 1<α<321<\alpha<\frac{3}{2}. Furthermore, for 0<α<10<\alpha<1, the holographic energy and pressure density illustrates phantom-like theory of the evolution when ωΛ<1\omega_{\Lambda}<-1. Also, we discuss the correspondence between the quintessence, K-essence, tachyon and dilaton field models and holographic dark energy models on similar fashion. To discuss the accelerated expansion of the universe, we explore the potential and the dynamics of quintessence, K-essence, tachyon and dilaton field models.

Keywords

Cite

@article{arxiv.1509.06980,
  title  = {A Study of Holographic Dark Energy Models in Chern-Simon Modified Gravity},
  author = {M. Jamil Amir and Sarfraz Ali},
  journal= {arXiv preprint arXiv:1509.06980},
  year   = {2017}
}

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15 pages