We show that D-dimensional de Sitter space is unstable to the nucleation of non-singular geometries containing spacetime regions with different numbers of macroscopic dimensions, leading to a dynamical mechanism of compactification. These and other solutions to Einstein gravity with flux and a cosmological constant are constructed by performing a dimensional reduction under the assumption of q-dimensional spherical symmetry in the full D-dimensional geometry. In addition to the familiar black holes, black branes, and compactification solutions we identify a number of new geometries, some of which are completely non-singular. The dynamical compactification mechanism populates lower-dimensional vacua very differently from false vacuum eternal...
introduced the study of the evolution of such models in a simple context we then go on to study a mo...
We derive necessary criteria for the existence of classical meta-stable de Sitter solutions in flux ...
It is known that the Einstein gravitational field equations in D > 4 spacetime dimensions have no ti...
We show that D-dimensional de Sitter space is unstable to the nucleation of non-singular geometries ...
We show that D-dimensional de Sitter space is unstable to the nucleation of non-singular geometries ...
Abstract We study the nonlinear evolution of unstable flux compactifications, applying numerical rel...
We consider warped compactifications in (4+d)-dimensional theories, with four dimensional de Sitter ...
We consider warped compactifications in ( 4 + d)-dimensional theories, with four-dimensional (4d) de...
We show that the warped de Sitter compactifications are possible under certain conditions in D-dimen...
We study compactifications of D-dimensional de Sitter space with a q-form flux down to D−Nq dimensio...
Constructing an explicit compactification yielding a metastable de Sitter (dS) vacuum in a UV consis...
Constructing an explicit compactification yielding a metastable de Sitter (dS) vacuum in a UV consis...
We report the results of a study on the dynamical compactification of spatially flat cosmological mo...
We investigate the dynamics of the geometric transitions associated to compactified spacetimes. By i...
Many theories of particle physics rely on the existence of more than three spatial dimensions. In th...
introduced the study of the evolution of such models in a simple context we then go on to study a mo...
We derive necessary criteria for the existence of classical meta-stable de Sitter solutions in flux ...
It is known that the Einstein gravitational field equations in D > 4 spacetime dimensions have no ti...
We show that D-dimensional de Sitter space is unstable to the nucleation of non-singular geometries ...
We show that D-dimensional de Sitter space is unstable to the nucleation of non-singular geometries ...
Abstract We study the nonlinear evolution of unstable flux compactifications, applying numerical rel...
We consider warped compactifications in (4+d)-dimensional theories, with four dimensional de Sitter ...
We consider warped compactifications in ( 4 + d)-dimensional theories, with four-dimensional (4d) de...
We show that the warped de Sitter compactifications are possible under certain conditions in D-dimen...
We study compactifications of D-dimensional de Sitter space with a q-form flux down to D−Nq dimensio...
Constructing an explicit compactification yielding a metastable de Sitter (dS) vacuum in a UV consis...
Constructing an explicit compactification yielding a metastable de Sitter (dS) vacuum in a UV consis...
We report the results of a study on the dynamical compactification of spatially flat cosmological mo...
We investigate the dynamics of the geometric transitions associated to compactified spacetimes. By i...
Many theories of particle physics rely on the existence of more than three spatial dimensions. In th...
introduced the study of the evolution of such models in a simple context we then go on to study a mo...
We derive necessary criteria for the existence of classical meta-stable de Sitter solutions in flux ...
It is known that the Einstein gravitational field equations in D > 4 spacetime dimensions have no ti...