Equivalence of matter-type modified gravity theories to general relativity with nonminimal matter interaction
Abstract
In this study, we first establish that gravity models incorporating matter-related terms, such as , , and , into the usual matter Lagrangian density , are equivalent to general relativity with nonminimal matter interactions. Through the redefinition , these models are exactly GR, yet the usual material field and its accompanying partner, the modification field , engage in nonminimal interactions. Specifically, , where is the interaction kernel that governs the rate of energy transfer. Our focus narrows on the specific model of , known as Energy-Momentum Squared Gravity, where the usual material field is accompanied by an \textit{energy-momentum squared field} (EMSF), , along with a sui generis nonminimal interaction between them. We demonstrate that a particular can be introduced by \textit{removing} (the new term emerging in models that incorporate scalars formed from ), thanks to the freedom in determining the interaction kernel, but this approach compromises the Lagrangian formulation of EMSG. Additionally, we address the ambiguities regarding the perfect fluid stemming from this new term. We show the proper way of calculating this term for a perfect fluid, revealing that it is indeed non-zero, contrary to common assumption in the literature. Finally, we re-examine cosmological models within the realm of EMSG, offering new insights into the applicability and interpretation of our findings in EMSG and similar theoretical frameworks.
Keywords
Cite
@article{arxiv.2306.11717,
title = {Equivalence of matter-type modified gravity theories to general relativity with nonminimal matter interaction},
author = {Özgür Akarsu and Mariam Bouhmadi-López and Nihan Katırcı and Elham Nazari and Mahmood Roshan and N. Merve Uzun},
journal= {arXiv preprint arXiv:2306.11717},
year = {2024}
}
Comments
18 pages, 1 figure, no tables; matches the version to appear in Physical Review D