Can an Extra Degree of Freedom in Scalar-Tensor Non-Metricity Gravity Account for the Evolution of the Universe?
arXiv:2506.17099 · doi:10.1088/1361-6382/ae0404
Abstract
We investigate whether the extra scalar degree of freedom that arises in the second connection class of scalar-tensor non-metricity gravity can accurately replicate and potentially enrich the cosmic expansion history. Focusing on a spatially flat FLRW background, we introduce Hubble-normalized variables and recast the field equations into an autonomous dynamical system. Four representative scenarios are analyzed comprehensively. Phase-space research reveals a rich hierarchy of critical points: matter-dominated, stiff-fluid, and de Sitter solutions, together with asymptotic trajectories leading to Big-Crunch/Rip singularities and transient, unstable matter epochs. With suitable parameter choices, the standard CDM sequence is reinstated; however, novel late-time and high-curvature regimes arise exclusively from the non-metricity sector. A systematic comparison of metric scalar-tensor and teleparallel scalar-torsion theories reveals unique stability characteristics and potential observational discriminants. Our findings indicate that the additional time-dependent function inherent to scalar-tensor non-metricity gravity can effectively explain the Universe's evolution while providing new phenomenology that can be tested by upcoming surveys.
References in corpus (30)
- Modified teleparallel gravity: inflation without inflaton
- Challenges for CDM: An update
- Are f(R) dark energy models cosmologically viable ?
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- Black holes in Gravity
- Cosmology in gravity: A unified dynamical system analysis at background and perturbation levels
- Autonomous Dynamical System Approach for Gravity
- Scalar-tensor theories of gravity, neutrino physics, and the tension
- Selected topics in scalar-tensor theories and beyond
- Translation of Einstein's Attempt of a Unified Field Theory with Teleparallelism
- Cosmological dynamics of Scalar--Tensor Gravity
- Dynamical features of scalar-torsion theories
- Non-metricity with bounday terms: gravity and cosmology
- Modified gravity realizations of quintom dark energy after DESI DR2
- Phase-space analysis of a novel cosmological model in theory
- Complete classification of cosmological teleparallel geometries
- Testing -Free f(Q) Cosmology
- Neutron Star in Covariant gravity
- Equivalence of cosmology with quintom-like scenario: the phantom field as effective realization of the non-trivial connection
- Phase-space analysis of the viscous fluid cosmological models in the coincident gravity
- Scalar-Tensor Gravity and DESI 2024 BAO data
- Spatial curvature in coincident gauge cosmology
- Stability of symmetric teleparallel scalar-tensor cosmologies with alternative connections
- Stability of Gravity via Dynamical System Approach: a Comprehensive Bayesian Statistical Analysis
- Phase-space analysis of dark energy models in non-minimally coupled theories of gravity
- DGP and DGPish cosmologies from actions
- Emergent Universe in f(Q) gravity theories
- Chameleon Mechanism in Scalar Nonmetricity Cosmology
- Dynamical system analysis in multiscalar-torsion cosmology
- A model-independent compact dynamical system formulation for exploring bounce and cyclic cosmological evolutions in gravity