Surface term, corner term, and action growth in F(Riemann) gravity theory
arXiv:1806.10312 · doi:10.1103/PhysRevD.99.086005
Abstract
After reformulating Riemann gravity theory as a second derivative theory by introducing two auxiliary fields to the bulk action, we derive the surface term as well as the corner term supplemented to the bulk action for a generic non-smooth boundary such that the variational principle is well posed. We also introduce the counter term to make the boundary term invariant under the reparametrization for the null segment. Then as a demonstration of the power of our formalism, not only do we apply our expression for the full action to evaluate the corresponding action growth rate of the Wheeler-DeWitt patch in the Schwarzchild anti-de Sitter black hole for the gravity and critical gravity, where the corresponding late time behavior recovers the previous one derived by other approaches, but also in the asymptotically Anti-de Sitter black hole for the critical Einsteinian cubic gravity, where the late time growth rate vanishes but still saturates the Lloyd bound.
25 pages, 10 figures, one new case study suggested by referee to demonstrate the power of our formalism
References in corpus (8)
- Gravitational action with null boundaries
- Critical Gravity in Four Dimensions
- Einsteinian cubic gravity
- Holographic studies of Einsteinian cubic gravity
- Boundary and Corner Terms in the Action for General Relativity
- Bounce Universe and Black Holes from Critical Einsteinian Cubic Gravity
- Lovelock action with nonsmooth boundaries
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