Some aspects of generalized modified gravity models
Ratbay Myrzakulov, Lorenzo Sebastiani, Sergio Zerbini

TL;DR
This paper reviews various aspects of generalized modified gravity models, including their mathematical properties, black hole solutions, cosmological implications, and recent developments like covariant theories and $F(T)$-gravity, aiming to explain dark energy, inflation, and dark matter.
Contribution
It provides a comprehensive overview of modified gravity theories, analyzing their physical properties, solutions, and potential to address dark energy, inflation, and dark matter.
Findings
Viable models can reproduce dark energy and inflation epochs.
High derivatives of Hubble parameter are influenced by dark energy oscillations.
Extended theories like $F(T)$-gravity offer new insights into dark matter.
Abstract
In the present work, we review some general aspects of modified gravity theories, investigating mathematical and physical properties and, more specifically, the feature of viable and realistic models able to reproduce the dark energy epoch and the early-time inflation. We will discuss the black hole solutions in generalized theories of gravity: it is of fundamental interest to understand how properties and laws of black holes in General Relativity can be addressed in the framework of modified theories. In particular, we will discuss the energy issue and the possibility to derive the First Law of thermodynamics from the field equations. Then, in the analysis of cosmological solutions, we will pay a particular attention to the occurrence of finite-time future singularities and to the possibility to avoid them in -gravity. Furthermore, realistic models of -gravity…
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