arXiv · 1808.01044
Dynamical evolution of non-minimally coupled scalar field in spherically symmetric de Sitter spacetimes
Abstract
We investigate the dynamical behavior of a scalar field non-minimally coupled to Einstein's tensor and Ricci scalar in geometries of asymptotically de Sitter spacetimes. We show that the quasinormal modes remain unaffected if the scalar field is massless and the black hole is electrically chargeless. In the massive case, the coupling of both parameters produces a region of instability in the spacetime determined by the geometry and field parameters. In the Schwarzschild case, every solution for the equations of motion with $\ell>0$ has a range of values of the coupling constant that produces unstable modes. The case $\ell=0$ is the most unstable one, with a threshold value for stability in the coupling. For the charged black hole, the existence of a range of instability in $\eta$ is strongly related to geometry parameters presenting a region of stability independent of the chosen parameter.
Explore related subjects
Keep this discovery
R. D. B. Fontana, Jeferson de Oliveira, A. B. Pavan. 2018-08-02. Dynamical evolution of non-minimally coupled scalar field in spherically symmetric de Sitter spacetimes. https://doi.org/10.1140/epjc%2Fs10052-019-6831-3
Cite the original work for its findings. Save a collection to share your selection of sources.