Topological Stabilization of Superheavy Elements via Stationary Light Theory and the Unified Vortex & Entropy Hypothesis
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Repository: Zenodo Open Access Subject: Nuclear Physics, Topological Vacuum Mechanics, Superheavy Element Stabilization Abstract Traditional synthesis of superheavy elements, notably Tennessine (\text{}^{293,294}_{117}\text{Ts}), remains bottlenecked by classical kinetic fusion limits and severe neutron deficiencies. By framing particles as localized stationary traps within a vacuum matrix—via Stationary Light Theory (SLT) and the Unified Vortex & Entropy Hypothesis (UVEH)—this paper presents a rigorous mathematical model for superheavy stability. We evaluate the Master Equation governing toroidal vortex equilibrium, establish the role of the Stillness Bridge (\zeta) in mitigating proton-vortex repulsion, and outline the exact conditions required to precipitate stable isotopic configurations such as \text{}^{301}\text{Ts}.



