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H. Golchin

Publications and source records attributed to H. Golchin.

2 recordsLinked to original sources

Consistency of nonlinear interacting ghost dark energy with recent observations

In this paper we investigate ghost dark energy model in the presence of non-linear interaction between dark energy and dark matter. We also extend the analysis to the so called generalized ghost dark energy (GGDE) which $ρ_D=αH+βH^2$. The model contains three free parameters as $Ω_D, ζ(=\frac{8πG β}{3})$ and $b^2$ (the coupling coefficient of interactions). We propose three kinds of non-linear interaction terms and discuss the behavior of equation of state, deceleration and dark energy density parameters of the model. We also find the squared sound speed and search for signs of stability of the model. To compare the interacting GGDE model with observational data sets, we use more recent observational outcomes, namely SNIa from JLA catalog, Hubble parameter, baryonic acoustic oscillation and the most relevant CMB parameters including, the position of acoustic peaks, shift parameters and redshift to recombination. For GGDE with the first non-linear interaction, the joint analysis indicates that $Ω_D=0.7192\pm0.0062$, $b^2=0.146^{+0.030}_{-0.026}$ and $ζ=0.104\pm0.047$ at 1 optimal variance error. For the second interaction, the best fit values at $1σ$ confidence are $Ω_D=0.72091\pm0.0065$, $b^2=0.0395\pm0.0080$ and $ζ\le0.0173$. According to combination of all observational data sets considered in this paper the best fit values for third non-linearly interacting model are $Ω_D=0.7287\pm0.0062$, $b^2=0.0109\pm0.0023$ and $ζ\le0.00764$ at $1σ$ confidence interval. Finally we found that the presence of interaction is compatible in mentioned models via current observational data sets.

astro-ph.CO

Non-Linearly Interacting Ghost Dark Energy in Brans-Dicke Cosmology

In this paper we extend the form of interaction term into the non-linear regime in the ghost dark energy model. A general form of non-linear interaction term is presented and cosmic dynamic equations are obtained. Next, the model is detailed for two special choice of the non-linear interaction term. According to this the universe transits at suitable time ($z\sim 0.8$) from deceleration to acceleration phase which alleviate the coincidence problem. Squared sound speed analysis revealed that for one class of non-linear interaction term $v_s^2$ can gets positive. This point is an impact of the non-linear interaction term and we never find such behavior in non interacting and linearly interacting ghost dark energy models. Also statefinder parameters are introduced for this model and we found that for one class the model meets the $ΛCDM$ while in the second choice although the model approaches the $ΛCDM$ but never touch that.

gr-qc