English

L.R.S. Bianchi type II Stiff Fluid cosmological model with Decaying Vacuum Energy Density $\Lambda$ in general relativity

General Relativity and Quantum Cosmology 2011-05-26 v1

Abstract

Locally rotationally symmetric (L.R.S.) Bianchi type II stiff fluid cosmological model is investigated. To get the deterministic model of the universe, we have assumed a condition A=BmA=B^{m} between metric potentials A, BA,~B where nn is the constant. It is shown that the vacuum energy density Λ\Lambda is positive and proportional to 1t2\frac{1}{t^{2}}. The values of deceleration parameter qq, matter-energy density Ωm\Omega_{m} and dark-energy density ΩΛ\Omega_{\Lambda} are found to be in good agreement with the values obtain from 5-years WMAP observations. the predicted value of the jerk parameter agrees with the SNLS SNIa and X-ray galaxy cluster distance data but does not with the SNIa gold sample data. In general, the model represent accelerating, shearing and non-rotating universe.The physical and geometrical behavior of these models are also discussed.

Keywords

Cite

@article{arxiv.1011.5709,
  title  = {L.R.S. Bianchi type II Stiff Fluid cosmological model with Decaying Vacuum Energy Density $\Lambda$ in general relativity},
  author = {Hassan Amirhashchi},
  journal= {arXiv preprint arXiv:1011.5709},
  year   = {2011}
}