We present the Modular–Elastic Vacuum Theory (TMEV), a self-consistent field-theoretic framework in which the physical vacuum is modeled as a structured medium with internal degrees of freedom. The formalism is defined on a four-dimensional spacetime coupled to a compact internal manifold, allowing a unified description of vacuum dynamics. The theory leads to an effective mass spectrum derived from the internal Laplacian operator, together with a projection mechanism that connects internal modes to observable quantities. In addition, one-dimensional string-like excitations arise naturally as reduced sectors of the vacuum field, without introducing fundamental extended objects. At macroscopic scales, the framework yields an emergent gravitational structure consistent with Einstein-like dynamics. The cosmological constant is interpreted as an effective property of the vacuum rather than a fundamental input parameter. The formulation is mathematically consistent within classical field theory and does not rely on external assumptions beyond the defined vacuum structure.
Edgar Marcelo Quiroz Robles (2026) studied this question.