English

Horndeski Gravity as $D\rightarrow4$ Limit of Gauss-Bonnet

General Relativity and Quantum Cosmology 2020-09-03 v4 High Energy Physics - Theory

Abstract

We propose a procedure for the D4D\rightarrow 4 limit of Einstein-Gauss-Bonnet (EGB) gravity that leads to a well defined action principle in four dimensions. Our construction is based on compactifying DD-dimensional EGB gravity on a (D4)(D-4)-dimensional maximally symmetric space followed by redefining the Gauss-Bonnet coupling ααD4\alpha\rightarrow \frac{\alpha}{D-4}. The resulting model is a special scalar-tensor theory that belongs to the family of Horndeski gravity. Static black hole solutions in the scalar-tensor theory are investigated. Interestingly, the metric profile is independent of the curvature of the internal space and coincides with the D4D\rightarrow 4 limit of the usual EGB black hole with the unusual Gauss-Bonnet coupling αD4\frac{\alpha}{D-4}. The curvature information of the internal space is instead encoded in the profile of the extra scalar field. Our procedure can also be generalized to define further limits of the Gauss-Bonnet combination by compactifying the DD-dimensional theory on a (Dp)(D-p)-dimensional maximally symmetric space with p3p\leq 3. These lead to different D4D\rightarrow 4 limits of EGB gravity as well as its D2,3D\rightarrow 2,3 limits.

Keywords

Cite

@article{arxiv.2003.11552,
  title  = {Horndeski Gravity as $D\rightarrow4$ Limit of Gauss-Bonnet},
  author = {H. Lu and Yi Pang},
  journal= {arXiv preprint arXiv:2003.11552},
  year   = {2020}
}

Comments

Latex, 11 pages, published version