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Cosmological scenarios in $f(Q; C)$ gravity with a dynamical degree of freedom

delete2026-05-04
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H
Hamid Shabani
A
Avik De *
DOI:10.1088/1361-6382/ae60bddelete
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Abstract

Abstract

En 中文
The theory, which extends symmetric teleparallel gravity by including the boundary term C in addition to the non-metricity scalar Q, provides a unifying framework that encompasses both f(Q) and gravities. In this work, we develop a comprehensive dynamical system analysis of cosmology formulated within the non-coincident affine connection branches. Unlike the coincident case, these branches introduce a dynamical degree of freedom that significantly enriches the cosmological phase space. We show that even for simple power-law forms of the Lagrangian, the theory accommodates a broad spectrum of cosmic scenarios, including successive pressureless matter eras, stiff-matter phases between early inflation and dark matter domination, and late-time acceleration. Our analysis demonstrates that the Universe can naturally evolve from an initial de Sitter (dS) phase to a matter-dominated epoch and subsequently to a final dS attractor, consistent with the observed thermal history. These results highlight the role of the dynamical connection in shaping cosmic evolution and underline the potential of gravity as a viable alternative framework for addressing outstanding issues in modern cosmology.
Keywords:
f(Q
C) gravity
dynamical system analysis
cosmological scenarios
non-coincident affine connection
dark energy
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Classical and Quantum Gravity cover
Classical and Quantum Gravity
IF:
3.7
Papers:
1.3W
Citations:
3.0W

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U
University of Sistan and Baluchestan
Scholars:
111
Papers: 77
Citations: 1.0K
U
universiti malaya
Scholars:
3.5K
Papers: 1.5K
Citations: 0
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