We identify, name, and characterize a geometric topology — the ABÏON topology — defined by five criteria: concentric dual envelopes, counter-rotation, helical surface profile (Archimedes screw), boca-garganta asymmetry, and organized off-diagonal energy-momentum T⁰ⁱ as its physical source. We demonstrate that this topology appears in at least seven independent classes of astrophysical systems — active galactic nuclei, pulsars, Kerr black holes, tidal disruption events, protoplanetary disk-jet systems, magnetic white dwarfs, and bipolar planetary nebulae — spanning fifteen orders of magnitude in spatial scale, twenty in mass, and fourteen in gravitomagnetic amplitude h₀φ. We prove that the ABÏON topology is the unique geometric solution to the conversion of rotational frame-dragging (h₀φ) into translational metric deformation (h₀z): among all symmetry classes of rotating mass distributions, only helical symmetry breaks the axial constraint, and the Archimedes screw is its sole geometric realization. We reinterpret the binary black hole inspiral as a contracting double-paraboloid ABÏON, identifying the gravitational-wave polarization structure (h₊ + ih×) detected by LIGO/Virgo as the direct signature of helical metric deformation — making the 2017 Nobel Prize the empirical certification of the ABÏON mechanism. We develop the metric displacement paradigm: objects in ABÏON systems do not move through spacetime under forces; spacetime deforms around organized momentum, and objects follow geodesics of the displaced metric. This paradigm resolves why galactic rotation at 220 km/s produces no locally detectable acceleration, why cosmological expansion carries galaxies apart without propulsion, and why binary inspirals produce spacetime perturbations detectable at gigaparsec distances without any force being exerted. We present the MIND constitutive framework (C_L → χ_D → T⁰ⁱ_eff → h₀ᵢ → g_tφ → geodesics → dynamics), validated against 187 SPARC galaxies (RMS = 7.62 km/s, zero free parameters) and 1,701 Pantheon+ supernovae (Δχ² = 430.7 over ΛCDM), and demonstrate its scale independence across thirty orders of magnitude from laboratory gyroscopes (h₀φ ~ 10⁻³⁰) to merging black holes (h₀φ ~ 1). We propose the Great Attractor as a candidate cosmological-scale ABÏON and trace the engineering pathway from natural observation to laboratory reproduction. Thirteen falsifiable predictions distinguish the framework from MOND, ΛCDM, and standard astrophysical models across gravitational-wave, galactic, laboratory, and cosmological domains. Keywords (separadas por coma, como pide Zenodo): gravitomagnetism, frame-dragging, metric deformation, Archimedes screw, organized momentum, ABÏON, MIND framework, gravitational waves, galactic dynamics, warp metric
No takes yet. Share an insight, caveat, or question.
Alvaro Fabian BRICIO ARZUBIDE (2026) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: