Symbolic Gravity Entanglement
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We propose a symbolic field framework in which gravitational curvature emerges from mod- ular entanglement entropy - a construct where identity-bearing excitation fields interact and entangle through modular resonance. This entropy reflects the distribution and coherence of symbolic structure, rather than statistical particle ensembles. within KN-stabilized symbolic excitation fields. Building on prior work in Symbolic Modular Gravity (SMG), we extend the model by formalizing symbolic entropy, attractor coherence, and thermodynamic curvature vari- ation. This approach yields a symbolic analog of Einstein’s equations, derived from symbolic entanglement structure rather than geometric postulates. We show that symbolic attractor dy- namics provide a mechanism for identity retention, memory, and spacetime analog behavior, unifying symbolic cognition and modular geometry.



