Averaging generalized scalar-field cosmologies III: Kantowski–Sachs and closed Friedmann–Lemaître–Robertson–Walker models

Author:

Leon GenlyORCID,González Esteban,Lepe Samuel,Michea Claudio,Millano Alfredo D.

Abstract

AbstractScalar-field cosmologies with a generalized harmonic potential and matter with energy density $$\rho _m$$ ρ m , pressure $$p_m$$ p m , and barotropic equation of state (EoS) $$p_m=(\gamma -1)\rho _m, \; \gamma \in [0,2]$$ p m = ( γ - 1 ) ρ m , γ [ 0 , 2 ] in Kantowski–Sachs (KS) and closed Friedmann–Lemaître–Robertson–Walker (FLRW) metrics are investigated. We use methods from non-linear dynamical systems theory and averaging theory considering a time-dependent perturbation function D. We define a regular dynamical system over a compact phase space, obtaining global results. That is, for KS metric the global late-time attractors of full and time-averaged systems are two anisotropic contracting solutions, which are non-flat locally rotationally symmetric (LRS) Kasner and Taub (flat LRS Kasner) for $$0\le \gamma \le 2$$ 0 γ 2 , and flat FLRW matter-dominated universe if $$0\le \gamma \le \frac{2}{3}$$ 0 γ 2 3 . For closed FLRW metric late-time attractors of full and averaged systems are a flat matter-dominated FLRW universe for $$0\le \gamma \le \frac{2}{3}$$ 0 γ 2 3 as in KS and Einstein–de Sitter solution for $$0\le \gamma <1$$ 0 γ < 1 . Therefore, a time-averaged system determines future asymptotics of the full system. Also, oscillations entering the system through Klein–Gordon (KG) equation can be controlled and smoothed out when D goes monotonically to zero, and incidentally for the whole D-range for KS and closed FLRW (if $$0\le \gamma < 1$$ 0 γ < 1 ) too. However, for $$\gamma \ge 1$$ γ 1 closed FLRW solutions of the full system depart from the solutions of the averaged system as D is large. Our results are supported by numerical simulations.

Funder

Fondo Nacional de Desarrollo Científico y Tecnológico

Publisher

Springer Science and Business Media LLC

Subject

Physics and Astronomy (miscellaneous),Engineering (miscellaneous)

Reference118 articles.

1. S. Foster, Class. Quantum Gravity 15, 3485 (1998)

2. J. Miritzis, Class. Quantum Gravity 20, 2981 (2003)

3. R. Giambo, F. Giannoni, G. Magli, Gen. Relativ. Gravit. 41, 21 (2009)

4. G. Leon, C.R. Fadragas, Dynamical Systems: And Their Applications (LAP Lambert Academic Publishing, Saarbrücken, 2012). arXiv:1412.5701 [gr-qc]

5. G. Leon, P. Silveira, C.R. Fadragas, Phase-space of flat Friedmann–Robertson–Walker models with both a scalar field coupled to matter and radiation, in Classical and Quantum Gravity: Theory, Analysis and Applications, ch 10. ed. by V.R. Frignanni (Nova Science Publisher, New York). arXiv:1009.0689 [gr-qc]

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