Study of dynamical systems and large-scale structure

Abstract

In this study, we employ dynamical systems methods to analyse the large-scale structure by considering two distinct interaction models (linear and non-linear) within the dark sector, associated with a specific dynamical dark energy model inspired by the Veneziano ghost theory in quantum chromodynamics (QCD). In these models, the dark energy density (DE) varies with the Hubble parameter (H), expressed as DE = α H + β H2. After defining the dimensionless parameters, we present autonomous equations that allow us to find the trace Tr(J) and the determinant D(J). With these solutions, we demonstrate the presence of unstable, saddle, and stable fixed points, corresponding to the radiation-, matter-, and dark-energy-dominated eras, respectively. Our results suggest that these models are theoretically viable for representing the interaction between dark sector fluids.

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