This work presents an exploratory computational and conceptual framework within Rachel Theory (RT), focusing on synchronization-related behavior, entanglement interpretation, localization tendencies, metastability, and structural dynamics. The presented framework is supported by exploratory computational simulations performed under multiple simulated conditions, including robustness-oriented testing, multi-seed analysis, disturbance comparisons, and parameter sensitivity evaluation. The paper does not claim experimentally validated physical proof, but instead proposes an exploratory structural framework intended for further mathematical development, computational refinement, independent scientific evaluation, and experimental comparison. Related RT simulation frameworks and exploratory computational environments are referenced throughout the work.
Shlomi Ryan (Sat,) studied this question.