Legendre scalarization in gravity and cosmology

AbstractWe propose a new formulation of f(R) gravity, dubbed scalarized f(R) gravity, in which the Legendre transform is included as a dynamical term. This leads to a theory with second-order field equations that describes general relativity with a self-interacting scalar field, without requiring the introduction of conformal frames. We demonstrate that the quadratic version of scalarized f(R) gravity reduces to general relativity with a massive scalar field, and we explore its implications for Friedmann cosmology. Our findings suggest that scalarized f(R) gravity may lead to simplified descriptions of cosmological applications, while the proposed formulation could offer a new perspective on the relationship between f(R) gravity and scalar–tensor theories.

Authors
Cotsakis Spiros , Mimoso J.P. , Miritzis John
Publisher
Springer New York LLC
Number of issue
5
Language
English
Pages
433
Status
Published
Volume
83
Year
2023
Date of creation
01.07.2024
Date of change
01.07.2024
Short link
https://repository.rudn.ru/en/records/article/record/109371/
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Rudnitskaya O.V., Tereshina T.A., Dobrokhotova E.V., Kultyshkina E.K., Chumakova N.A., Kokorin A.I., Zubavichus Y.V., Khrustalev V.N.
ACS Omega. American Chemical Society. Vol. 8. 2023. P. 20569-20578