arXiv · gr-qc/0007038
Cosmological scaling solutions of minimally coupled scalar fields in three dimensions
Abstract
We examine Friedmann-Robertson-Walker models in three spacetime dimensions. The matter content of the models is composed of a perfect fluid, with a $γ$-law equation of state, and a homogeneous scalar field minimally coupled to gravity with a self-interacting potential whose energy density red-shifts as $a^{-2 ν}$, where a denotes the scale factor. Cosmological solutions are presented for different range of values of $γ$ and $ν$. The potential required to agree with the above red-shift for the scalar field energy density is also calculated.
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Norman Cruz, Cristian Martinez. 2000-07-17. Cosmological scaling solutions of minimally coupled scalar fields in three dimensions. https://doi.org/10.1088/0264-9381%2F17%2F15%2F302
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