Hassaine, M. Instituto de Matemática y Física, Universidad de Talca, Casilla 747, Talca, Chile.Starting from gravity as a Chern–Simons action for the AdS algebra in five dimensions, it is possible to modify the theory through an expansion of the Lie algebra that leads to a system consisting of the Einstein–Hilbert action plus non-minimally coupled matter. The modified system is gauge invariant under the Poincaré group enlarged by an Abelian ideal. Although the resulting action naively looks like general relativity plus corrections due to matter sources, it is shown that the non-minimal couplings produce a radical departure from GR. Indeed, the dynamics is not continuously connected to the one obtained from Einstein–Hilbert action. In a matt...
We study the non-relativistic expansion of general relativity coupled to matter. This is done by exp...
In this article it is studied the 3-brane world in the context of five-dimensional Einstein-Chern-Si...
We extend a recent classification of three-dimensional spatially isotropic homogeneous spacetimes to...
Starting from gravity as a Chern-Simons action for the AdS algebra in five dimensions, it is possibl...
AbstractChern–Simons models for gravity are interesting because they provide a truly gauge-invariant...
AbstractChern–Simons models for gravity are interesting because they provide a truly gauge-invariant...
AbstractWe show that the Lagrangian for Lovelock–Cartan gravity theory can be reformulated as an act...
Abstract In this work, we apply the semigroup expansion method of Lie algebras to construct novel an...
Five-dimensional Chern–Simons theory with (anti-)de Sitter SO(1,5) or SO(2,4) gauge invariance prese...
AbstractWe show that for four-dimensional spacetimes with a non-null hypersurface orthogonal Killing...
AbstractIf the Chern–Simons theory is the appropriate gauge theory for the gravitational interaction...
In the context of the non-relativistic theories, a generalization of the Chern–Weil-theorem allows u...
We study the Hamiltonian dynamics of a five-dimensional Chern–Simons theory for the gauge algebra $$...
Recently it was shown that standard odd- and even-dimensional general relativity can be obtained fro...
We show that the Lagrangian for Lovelock–Cartan gravity theory can be reformulated as an action whic...
We study the non-relativistic expansion of general relativity coupled to matter. This is done by exp...
In this article it is studied the 3-brane world in the context of five-dimensional Einstein-Chern-Si...
We extend a recent classification of three-dimensional spatially isotropic homogeneous spacetimes to...
Starting from gravity as a Chern-Simons action for the AdS algebra in five dimensions, it is possibl...
AbstractChern–Simons models for gravity are interesting because they provide a truly gauge-invariant...
AbstractChern–Simons models for gravity are interesting because they provide a truly gauge-invariant...
AbstractWe show that the Lagrangian for Lovelock–Cartan gravity theory can be reformulated as an act...
Abstract In this work, we apply the semigroup expansion method of Lie algebras to construct novel an...
Five-dimensional Chern–Simons theory with (anti-)de Sitter SO(1,5) or SO(2,4) gauge invariance prese...
AbstractWe show that for four-dimensional spacetimes with a non-null hypersurface orthogonal Killing...
AbstractIf the Chern–Simons theory is the appropriate gauge theory for the gravitational interaction...
In the context of the non-relativistic theories, a generalization of the Chern–Weil-theorem allows u...
We study the Hamiltonian dynamics of a five-dimensional Chern–Simons theory for the gauge algebra $$...
Recently it was shown that standard odd- and even-dimensional general relativity can be obtained fro...
We show that the Lagrangian for Lovelock–Cartan gravity theory can be reformulated as an action whic...
We study the non-relativistic expansion of general relativity coupled to matter. This is done by exp...
In this article it is studied the 3-brane world in the context of five-dimensional Einstein-Chern-Si...
We extend a recent classification of three-dimensional spatially isotropic homogeneous spacetimes to...