English

A connection between Gravitational Scalar-Tensor theories and Generalized Hybrid theories

General Relativity and Quantum Cosmology 2026-03-31 v1

Abstract

We establish a correspondence between higher-derivative gravitational scalar-tensor theories of the form Ψ(R,(R)2,R)\Psi(R,(\nabla R)^2,\Box R) and generalized hybrid metric-Palatini models f(R,R)f(R,\mathcal{R}). Restricting to the physically relevant case of linear dependence on R\Box R, we make explicit that both frameworks can be reformulated in the Einstein frame as General Relativity minimally coupled to two interacting scalar fields, thereby opening the possibility of finding theories that are dynamically equivalent. This correspondence provides an explicit dictionary relating the functions that define the higher-derivative theory to the hybrid function f(R,R)f(R,\mathcal{R}), allowing for reconstruction in both directions. We illustrate the usefulness of the procedure with explicit examples.

Keywords

Cite

@article{arxiv.2603.28497,
  title  = {A connection between Gravitational Scalar-Tensor theories and Generalized Hybrid theories},
  author = {Jonathan Ramírez and Santiago Esteban Perez Bergliaffa},
  journal= {arXiv preprint arXiv:2603.28497},
  year   = {2026}
}