Abstract
We present a covariant scalar–vector–tensor framework in which late-time cosmic acceleration
arises from a dynamical coupling between spacetime expansion and a scalar–aether
sector rather than from a fundamental cosmological constant. The theory reduces to General
Relativity in local and strong-field regimes but introduces a linear correction in the Hubble
parameter at cosmological scales. We derive the field equations from the action, explicitly
show how the interaction term generates the linear-H modification, analyze background and
perturbation stability, and compute observable consequences for the expansion rate, structure
growth, and effective dark energy equation of state. A constrained parameter window
produces small correlated shifts in H0, fσ8, and w0 while preserving early-universe physics.