arXiv · 2105.04726
On Conformal Transformation with Multiple Scalar Fields and Geometric Property of Field Space with Einstein-like Solutions
Abstract
Multiple scalar fields appear in vast modern particle physics and gravity models. When they couple to gravity non-minimally, conformal transformation is utilized to bring the theory into Einstein frame. However, the kinetic terms of scalar fields are usually not canonical, which makes analytic treatment difficult. Here we investigate under what conditions the theories can be transformed to the quasi-canonical form, in which case the effective metric tensor in field space is conformally flat. We solve the relevant nonlinear partial differential equations for arbitrary number of scalar fields and present several solutions that may be useful for future phenomenological model building, including the $\sigma$-model with a particular non-minimal coupling. We also find conformal flatness can always be achieved in some modified gravity theories, for example, Starobinsky model.
Explore related subjects
Keep this discovery
Yong Tang, Yue-Liang Wu. 2021-05-11. On Conformal Transformation with Multiple Scalar Fields and Geometric Property of Field Space with Einstein-like Solutions. https://doi.org/10.1103/physrevd.104.064042
Cite the original work for its findings. Save a collection to share your selection of sources.