THE ABÏON METRIC Parametric Topology Optimization

We present the complete parametric optimization of the double-surface topology underlying the ABÏON warp-drive geometry — a hybrid configuration consisting of an outer hyperboloidal shell rotating at angular velocity +ω and an inner paraboloidal shell counter-rotating at −ω. The optimization seeks to maximize the Anti-Venturi effect: the geometric property whereby the inter-shell separation at the throat exceeds the separation at the mouths, thereby concentrating momentum density T⁰ⁱ in the region of maximum frame-dragging coupling. A two-stage optimization strategy is employed: stochastic exhaustive search over 156,800 discretized combinations followed by differential evolution over the continuous six-dimensional parameter space. The resulting global optimum achieves a throat separation of 86.3 m, a mouth separation of 43.2 m, and an exact d_max/d_min ratio of 2.00. Sensitivity analysis reveals that the score surface is dominated by two parameters (exterior throat radius and device semi-length), while the remaining four exhibit robust tolerance under ±20% perturbation. Keywords: ABÏON metric, warp drive, topology optimization, Anti-Venturi effect, frame-dragging, differential evolution, hyperboloid-paraboloid geometry, parametric design, momentum density concentration, General Relativity

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-29
DOI
https://doi.org/10.5281/zenodo.23031185
Primary Topic
Topology Optimization in Engineering
Type
preprint
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THE ABÏON METRIC Parametric Topology Optimization

Alvaro Fabian BRICIO ARZUBIDE
Zenodo (CERN European Organization for Nuclear Research)
Topology Optimization in Engineering
preprint

THE ABÏON METRIC Parametric Topology Optimization

Alvaro Fabian BRICIO ARZUBIDE
preprint en

Abstract

We present the complete parametric optimization of the double-surface topology underlying the ABÏON warp-drive geometry — a hybrid configuration consisting of an outer hyperboloidal shell rotating at angular velocity +ω and an inner paraboloidal shell counter-rotating at −ω. The optimization seeks to maximize the Anti-Venturi effect: the geometric property whereby the inter-shell separation at the throat exceeds the separation at the mouths, thereby concentrating momentum density T⁰ⁱ in the region of maximum frame-dragging coupling. A two-stage optimization strategy is employed: stochastic exhaustive search over 156,800 discretized combinations followed by differential evolution over the continuous six-dimensional parameter space. The resulting global optimum achieves a throat separation of 86.3 m, a mouth separation of 43.2 m, and an exact d_max/d_min ratio of 2.00. Sensitivity analysis reveals that the score surface is dominated by two parameters (exterior throat radius and device semi-length), while the remaining four exhibit robust tolerance under ±20% perturbation. Keywords: ABÏON metric, warp drive, topology optimization, Anti-Venturi effect, frame-dragging, differential evolution, hyperboloid-paraboloid geometry, parametric design, momentum density concentration, General Relativity

Zenodo (CERN European Organization for Nuclear Research)
Topology Optimization in Engineering
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THE ABÏON METRIC Parametric Topology Optimization — Alvaro Fabian BRICIO ARZUBIDE · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS