Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8193794 | Physics Letters B | 2010 | 5 Pages |
Abstract
We propose two improved parameterized form for the growth index of the linear matter perturbations: (I) γ(z)=γ0+(γââγ0)zz+1 and (II) γ(z)=γ0+γ1zz+1+(γââγ1âγ0)(zz+1)α. With these forms of γ(z), we analyze the accuracy of the approximation the growth factor f by Ωmγ(z) for both the wCDM model and the DGP model. For the first improved parameterized form, we find that the approximation accuracy is enhanced at the high redshifts for both kinds of models, but it is not at the low redshifts. For the second improved parameterized form, it is found that Ωmγ(z) approximates the growth factor f very well for all redshifts. For chosen α, the relative error is below 0.003% for the ÎCDM model and 0.028% for the DGP model when Ωm=0.27. Thus, the second improved parameterized form of γ(z) should be useful for the high precision constraint on the growth index of different models with the observational data. Moreover, we also show that α depends on the equation of state w and the fractional energy density of matter Ωm0, which may help us learn more information about dark energy and DGP models.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Nuclear and High Energy Physics
Authors
Jiliang Jing, Songbai Chen,