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Covariant Galileon

Cédric DeffayetGilles Esposito-FarèseAlexander Vikman

Abstract

We consider the recently introduced ``Galileon'' field in a dynamical spacetime. When the Galileon is assumed to be minimally coupled to the metric, we underline that both field equations of the Galileon and the metric involve up to third-order derivatives. We show that a unique nonminimal coupling of the Galileon to curvature eliminates all higher derivatives in all field equations, hence yielding second-order equations, without any extra propagating degree of freedom. The resulting theory breaks the generalized ``Galilean'' invariance of the original model.

Cosmology and Gravitation TheoriesBlack Holes and Theoretical PhysicsAdvanced Differential Geometry ResearchPhysicsCurvatureCovariant transformationMetric (unit)SpacetimeTheoretical physicsMathematical physicsClassical mechanicsField (mathematics)Galilean
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References
4D gravity on a brane in 5D Minkowski space
Physics Letters B · 2000 · 3,164 citations
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