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Geometric flows in Horava-Lifshitz gravity

Bakas, Ioannis and Bourliot, Francois and Lust, Dieter and Petropoulos, Marios

Keywords

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Abstract

We consider instanton solutions of Euclidean Horava-Lifshitz gravity in four dimensions satisfying the detailed balance condition. They are described by geometric flows in three dimensions driven by certain combinations of the Cotton and Ricci tensors as well as the cosmological-constant term. The deformation curvature terms can have competing behavior leading to a variety of fixed points. The instantons interpolate between any two fixed points, which are vacua of topologically massive gravity with Lambda > 0, and their action is finite. Special emphasis is placed on configurations with SU(2) isometry associated with homogeneous but generally non-isotropic Bianchi IX model geometries. In this case, the combined Ricci-Cotton flow reduces to an autonomous system of ordinary differential equations whose properties are studied in detail for different couplings. The occurrence and stability of isotropic and anisotropic fixed points are investigated analytically and some exact solutions are obtained. The corresponding instantons are classified and they are all globally R x S^3 and complete spaces. Generalizations to higher-dimensional gravities are also briefly discussed.

Information

Published
2010 as article (english)
JHEP, 04 - page(s): 131
Contact
Prof. Dr. Dieter Luest
Type
theoretical work
Links
pdf
spires
www-library.desy.de/…
Related to the research area(s):
A
e-Print
1002.0062

Technische Universitaet Muenchen
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