中文

暗能量的几何模型

天体物理学 2007-05-23 v2

摘要

A cosmological model with a gravitational Lagrangian Lg(R)R+ARnL_g(R)\propto R+A R^n is set up to account for the presently observed re-acceleration of the universe. The evolution equation for the scale factor aa of the universe is analyzed in detail for the two parameters n=2n=2 and n=4/3n=4/3, which were preferred by previous studies of the early universe. The initial conditions are specified at a red-shift parameter z0z\approx 0. The fit to the observable data fixes the free parameter AA. The analysis shows that the model with n=2n=2 agrees better with present data. Then, if we set w(q)=1w(q)=-1 at z=0z=0, corresponding to the deceleration parameter q1/2q\approx -1/2, we find that at z0.5z\approx 0.5, w(q)w(q) has evolved to w0.72w\approx -0.72, corresponding to q0q\approx 0. At z1z\approx 1 we find w0w\approx 0 corresponding to q1/2q\approx 1/2. These results are compared with the flat Friedmann model with cold matter and Lambda-term (LCDM model) for the same initial conditions at z0z\approx 0. The other choice of the model with n=4/3n=4/3 allows for big crunch. However this possibility is eliminated by the fit of AA to the present data.

关键词

引用

@article{arxiv.astro-ph/0501209,
  title  = {Geometric model of dark energy},
  author = {V. Folomeev and V. Gurovich and H. Kleinert},
  journal= {arXiv preprint arXiv:astro-ph/0501209},
  year   = {2007}
}

备注

8 pages, 1 figure, added reference, corrected the title of the figure