A Unified Scalar-Fermion-Gauge-Gravitational Action
with Spontaneous Symmetry Breaking in Curved Spacetime
We present a theoretical framework integrating scalar, fermionic, gauge, and gravitational sectors into a single action in curved spacetime. The model features spontaneous symmetry breaking, curvature-sensitive mass generation, and quantum corrections via renormalization group flow. This construction offers a minimal but powerful lens to explore mass, geometry, and vacuum structure as emergent from unified variational principles.
Fermions acquire dynamic masses via curvature-sensitive coupling, unifying geometry and substance.
Scalar fields trigger mass emergence and phase transitions across vacuum landscapes.
Energy-dependent coupling constants reveal quantum corrections across cosmological epochs.