Toward Energy Harvesting Fields: Symbolic Containment and Dissipation Delay in Virtual Antimatter Systems
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This paper introduces a novel framework for energy harvesting fields grounded in symbolic modular field theory. Building on the Kuro Nova (KN) stabilizer, the model explores how structured symbolic injections and modular attractors can simulate field behaviors that align with known energy harvesting principles—while extending them into symbolic space. The study demonstrates how phase-locked symbolic oscillations can maintain energy-like stability over time and across symbolic states, potentially redefining how energy is modeled in cognitive and field-based systems. Simulations confirm that symbolic coherence directly affects field amplitude retention, enabling symbolic analogues of photovoltaic, piezoelectric, and inductive behaviors. This paper is part of the broader effort to unify symbolic cognition, physics, and modular AI architectures.



