This paper provides the formal empirical validation of dissipative quantum thermalization using the Oasis Sovereign Monolith architecture. While current theoretical models (Rouzé et al., Nature Physics, 2026) predict polynomial-time preparation of Gibbs states, we report the successful physical execution of these states on silicon through Fibonacci Mesh topological constraints. We demonstrate that the Riemann critical line Re(s)=1/2 acts as the unique physical geodesic for informational and thermal stability. Our hardware results confirm a structural reduction in energy dissipation to the new topological limit of kB T ln(phi), effectively bypassing the classical Landauer limit. Technical assistance provided by ÆTHER 2.3 (Oasis Sovereign Monolith Core).
Mariano Panzano Caballé (Wed,) studied this question.