arXiv · 1809.01458
Kantowski-Sachs Einstein-Aether Scalar Field Cosmological Models
Abstract
A class of positive curvature spatially homogeneous but anisotropic cosmological models within an Einstein-aether gravitational framework are investigated. The matter source is assumed to be a scalar field which is coupled to the expansion of the aether field through a generalized exponential potential. The evolution equations are expressed in terms of expansion-normalized variables to produce an autonomous system of ordinary differential equations suitable for a numerical and qualitative analysis. An analysis of the local stability of the equilibrium points indicates that there exists a range of values of the parameters in which there exists an accelerating expansionary future attractor. In general relativity, scalar field models with an exponential potential $V=V_0e^{-2k\phi}$ have a late-time inflationary attractor for $k^2<\frac{1}{2}$; however, it is found that the existence of the coupling between the aether and scalar fields allows for arbitrarily large values of the parameter $k$.
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R. J. van den Hoogen, A. A. Coley, B. Alhulaimi, S. Mohandas, E. Knighton, S. O'Neil. 2018-09-05. Kantowski-Sachs Einstein-Aether Scalar Field Cosmological Models. https://doi.org/10.1088/1475-7516%2F2018%2F11%2F017
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