Noncoincidence $f(Q)$-Cosmology with Dark Matter Coupled to Gravity
Abstract
We investigate FLRW cosmology in the framework of symmetric teleparallel gravity with a nonminimal coupling between dark matter and the gravitational field. In the noncoincidence gauge, the field equations admit an equivalent multi-scalar field representation, which we investigate the phase-space using the Hubble-normalization approach. We classify all stationary points for arbitrary function and we discuss the physical properties of the asymptotic solutions. For the power-law theory, we perform a detailed stability analysis and show that the de Sitter solution is the unique future attractor, while the matter-dominated point appears as a saddle point. Moreover, there exist a family of scaling solutions that can be related to inflationary dynamics. In contrast with uncoupled models, the presence of the coupling introduces a viable matter-dominated era alongside late-time accelerated expansion. Our study shows that the coupling function plays a crucial role in cosmological dynamics in gravity.
Keywords
Cite
@article{arxiv.2510.00535,
title = {Noncoincidence $f(Q)$-Cosmology with Dark Matter Coupled to Gravity},
author = {A. Abebe and P. S. Apostolopoulos and A. Giacomini and G. Leon and F. Moncada and A. Paliathanasis},
journal= {arXiv preprint arXiv:2510.00535},
year = {2026}
}
Comments
14 pages, 3 figures, to appear in Fortschritte der Physik - Progress of Physics