Cosmological solutions in $f(Q)$ gravity via Noether symmetry approach
Abstract
Symmetry plays a crucial role in theoretical physics, especially Noether symmetry, which is a powerful approach for identifying the models at the fundamental level. The exact solution is provided within the point-like Lagrangian framework. In this work, we study one of the alternative theories of gravity based on the non-metricity scalar , namely gravity, via Noether symmetry. We utilize Noether symmetry within the framework of gravity to derive the functional expression for , which is given by . To confirm the exact solution of the model through Noether symmetry, we continue to consider the Friedmann-Robertson-Walker (FRW) cosmology with the dynamical solution of the system using dimensionless variables and show that the accelerated expansion of the universe follows a power law scale factor. In the following, we show that the quantities corresponding to the exact solution for lead to an accelerated expansion universe. Finally, in the framework of scalar-tensor cosmology, we apply the Noether symmetry approach to find the cosmological models consistent with the Noether symmetry.
Keywords
Cite
@article{arxiv.2510.16971,
title = {Cosmological solutions in $f(Q)$ gravity via Noether symmetry approach},
author = {M. Mahmoudzadeh Baghbani and K. Atazadeh and M. Mousavi},
journal= {arXiv preprint arXiv:2510.16971},
year = {2025}
}
Comments
14 pages, 3 figures, Accepted for publication by IJGMMP