Observational constraints on non-minimally coupled Galileon model

Abstract

As an extension of Dvali-Gabadadze-Porrati (DGP) model, the Galileon theory has been proposed to explain the "self-accelerating problem" and "ghost instability problem". In this Paper, we extend the Galileon theory by considering a non-minimally coupled Galileon scalar with gravity. The statefinder analysis, Om(z) diagnostic and constraint the model parameters have been investigate , we find m0=0.263-0.031+0.031, n=1.53-0.37+0.21 (at the 95\% confidence level) with 2min=473.376. Further we show that due to the SNe Ia + BAO data ,our model behaves like a phantom-like dark energy.

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