Inflation in Myrzakulov $F(R,T)$ Gravity: A Comparative Study in Metric, Symmetric Teleparallel, and Weitzenböck Formalisms

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Hauptverfasser: Momeni, Davood, Myrzakulov, Ratbay
Format: Preprint
Veröffentlicht: 2025
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author Momeni, Davood
Myrzakulov, Ratbay
author_facet Momeni, Davood
Myrzakulov, Ratbay
contents We present a unified treatment of cosmic inflation within the framework of Myrzakulov Gravity, exploring its realization in three different formalisms: metric (curvature-based), teleparallel (torsion-based), and symmetric teleparallel (non-metricity-based). For each case, we derive the corresponding field equations in a flat FLRW background, study inflationary solutions driven by a scalar field, and compute observable quantities such as the scalar spectral index \( n_s \) and the tensor-to-scalar ratio \( r \). In addition to these geometric sectors, we extend our analysis to the more general and dynamically richer Myrzakulov \( F(R,T) \) gravity, which incorporates both curvature \( R \) and torsion \( T \) in a unified action. We derive the inflationary dynamics in this hybrid model and investigate how it interpolates between pure \( f(R) \) and \( f(T) \) behaviors. The resulting framework allows for enhanced flexibility in matching Planck and BICEP/Keck observational constraints. We present analytic estimates and schematic predictions in the \( n_s \)--\( r \) plane, demonstrating that appropriately chosen parameters in \( F(R,T) \) models can produce viable and distinguishable inflationary signatures. This comparative and extended study highlights the potential of Myrzakulov Gravity and its generalizations to provide a consistent and geometrically motivated description of the early universe, with predictive power across different formulations of spacetime geometry.
format Preprint
id arxiv_https___arxiv_org_abs_2507_11753
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Inflation in Myrzakulov $F(R,T)$ Gravity: A Comparative Study in Metric, Symmetric Teleparallel, and Weitzenböck Formalisms
Momeni, Davood
Myrzakulov, Ratbay
General Relativity and Quantum Cosmology
High Energy Physics - Theory
We present a unified treatment of cosmic inflation within the framework of Myrzakulov Gravity, exploring its realization in three different formalisms: metric (curvature-based), teleparallel (torsion-based), and symmetric teleparallel (non-metricity-based). For each case, we derive the corresponding field equations in a flat FLRW background, study inflationary solutions driven by a scalar field, and compute observable quantities such as the scalar spectral index \( n_s \) and the tensor-to-scalar ratio \( r \). In addition to these geometric sectors, we extend our analysis to the more general and dynamically richer Myrzakulov \( F(R,T) \) gravity, which incorporates both curvature \( R \) and torsion \( T \) in a unified action. We derive the inflationary dynamics in this hybrid model and investigate how it interpolates between pure \( f(R) \) and \( f(T) \) behaviors. The resulting framework allows for enhanced flexibility in matching Planck and BICEP/Keck observational constraints. We present analytic estimates and schematic predictions in the \( n_s \)--\( r \) plane, demonstrating that appropriately chosen parameters in \( F(R,T) \) models can produce viable and distinguishable inflationary signatures. This comparative and extended study highlights the potential of Myrzakulov Gravity and its generalizations to provide a consistent and geometrically motivated description of the early universe, with predictive power across different formulations of spacetime geometry.
title Inflation in Myrzakulov $F(R,T)$ Gravity: A Comparative Study in Metric, Symmetric Teleparallel, and Weitzenböck Formalisms
topic General Relativity and Quantum Cosmology
High Energy Physics - Theory
url https://arxiv.org/abs/2507.11753