Dictated by the string theory and various higher dimensional scenarios, black holes in D > 4-dimensional space-times must have higher curvature corrections. The first and dominant term is quadratic in curvature, and called the Gauss-Bonnet (GB) term. We shall show that although the Gauss-Bonnet correction changes black hole's geometry only softly, the emission of gravitons is suppressed by many orders even at quite small values of the GB coupling. The huge suppression of the graviton emission is due to the multiplication of the two effects: the quick cooling of the black hole when one turns on the GB coupling and the exponential decreasing of the gray-body factor of the tensor type of gravitons at small and moderate energies. At higher D th...
We make an extensive study of evolution of gravitational perturbations of D-dimensional black holes ...
We make an extensive study of evolution of gravitational perturbations of D-dimensional black holes ...
We make an extensive study of evolution of gravitational perturbations of D-dimensional black holes ...
Dictated by the string theory and various higher dimensional scenarios, black holes in D > 4-dimensi...
Dictated by the string theory and various higher dimensional scenarios, black holes in D > 4-dimensi...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The Gauss- Bonnet invariant is one of the most promising can-didates for a quadratic curvature corre...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The (3+1)-dimensional Einstein-Gauss-Bonnet theory of gravity which breaks the Lorentz invariance in...
accepted by JETPGauss-Bonnet gravity provides one of the most promising frameworks to study curvatur...
We make an extensive study of evolution of gravitational perturbations of D-dimensional black holes ...
We make an extensive study of evolution of gravitational perturbations of D-dimensional black holes ...
We make an extensive study of evolution of gravitational perturbations of D-dimensional black holes ...
Dictated by the string theory and various higher dimensional scenarios, black holes in D > 4-dimensi...
Dictated by the string theory and various higher dimensional scenarios, black holes in D > 4-dimensi...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The Gauss- Bonnet invariant is one of the most promising can-didates for a quadratic curvature corre...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The Gauss - Bonnet invariant is one of the most promising candidates for a quadratic curvature corre...
The (3+1)-dimensional Einstein-Gauss-Bonnet theory of gravity which breaks the Lorentz invariance in...
accepted by JETPGauss-Bonnet gravity provides one of the most promising frameworks to study curvatur...
We make an extensive study of evolution of gravitational perturbations of D-dimensional black holes ...
We make an extensive study of evolution of gravitational perturbations of D-dimensional black holes ...
We make an extensive study of evolution of gravitational perturbations of D-dimensional black holes ...