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We contrast the planar rotational superradiance experiment of Alù et al. (Nature, July 2026) with the conical extension of the UAT/UCP 8‑coil interferometer. While the planar setup extracts energy as sterile dispersion, the conical geometry—achieved by vertically displacing the central coil by 7% and driving it with the Thermodynamic Overdrive factor κ_crit/k_early ≈ 5.147—produces a directional scalar attractor, a laboratory analogue of gravitational curvature. Numerical simulations show that the resultant amplitude increases by over 1685% relative to the planar case. This work demonstrates that the 7% thermal margin, the single free parameter of the UAT/UCP framework, is the optimal displacement for triggering the transition from superradiance to structured curvature. The complete Python code and LaTeX source are provided.
Percudani M. A. 2026. From Planar Superradiance to Conical Curvature: Contrasting the UAT/UCP Topological Defect with Alù et al. (Nature, 2026). PREPRINTS.RU. https://doi.org/10.24108/preprints-3115997