General Relativity vs TGIU (Universal Gravitational Informational Theory) _ Ghost Memory, Spacetime Curvature, and the Ontology of Gravity

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Autor principal: Virtosu, Sebastian
Formato: Recurso digital
Publicado: Zenodo 2025
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author Virtosu, Sebastian
author_facet Virtosu, Sebastian
contents <p>We contrast General Relativity (GR) and the Universal Gravito-Informational Theory (TGIU) on the problem of gravity without matter, focusing on two test cases: (i) the 8.31-minute persistence of Earth’s orbit if the Sun vanished, and (ii) the paradox of black hole singularities. In GR, gravity is curvature: Earth continues its orbit until the causal update in the metric arrives at light speed, and black holes represent infinite curvature from finite matter. In TGIU, gravity is collapse memory: the disappearance of matter leaves Ghost Dark Matter (GDM) — a transient informational imprint in the substrate (∇Φ, ∇S) — that decays under TEF regulation. Black holes are not infinite wells but 2D collapse nodes, where matter ceases and residual collapse impulses generate new spacetime (Dark Energy) and potentially new universes.</p> <p>We propose falsifiable distinctions: GR predicts sharp gravitational wave fronts and clean ringdowns, while TGIU predicts residual echoes and asymptotic tails; GR anticipates particulate dark matter, while TGIU predicts ghost scaffolds measurable via lensing and MOND-like scaling; interferometric experiments may reveal a visibility cap at η ≈ 0.783 with PNCP-like kinks, absent in GR/QM.</p> <p>Thus, both GR and TGIU acknowledge ghost-like persistence of curvature, but TGIU formalizes it as GDM, coupled to collapse constants (η, θ_C) and TEF regulation. Detection of long-lived gravitational echoes, ghost lensing scaffolds, or PNCP-encoded entropy caps would favor TGIU’s informational ontology over GR’s geometry-only account.</p>
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spellingShingle General Relativity vs TGIU (Universal Gravitational Informational Theory) _ Ghost Memory, Spacetime Curvature, and the Ontology of Gravity
Virtosu, Sebastian
<p>We contrast General Relativity (GR) and the Universal Gravito-Informational Theory (TGIU) on the problem of gravity without matter, focusing on two test cases: (i) the 8.31-minute persistence of Earth’s orbit if the Sun vanished, and (ii) the paradox of black hole singularities. In GR, gravity is curvature: Earth continues its orbit until the causal update in the metric arrives at light speed, and black holes represent infinite curvature from finite matter. In TGIU, gravity is collapse memory: the disappearance of matter leaves Ghost Dark Matter (GDM) — a transient informational imprint in the substrate (∇Φ, ∇S) — that decays under TEF regulation. Black holes are not infinite wells but 2D collapse nodes, where matter ceases and residual collapse impulses generate new spacetime (Dark Energy) and potentially new universes.</p> <p>We propose falsifiable distinctions: GR predicts sharp gravitational wave fronts and clean ringdowns, while TGIU predicts residual echoes and asymptotic tails; GR anticipates particulate dark matter, while TGIU predicts ghost scaffolds measurable via lensing and MOND-like scaling; interferometric experiments may reveal a visibility cap at η ≈ 0.783 with PNCP-like kinks, absent in GR/QM.</p> <p>Thus, both GR and TGIU acknowledge ghost-like persistence of curvature, but TGIU formalizes it as GDM, coupled to collapse constants (η, θ_C) and TEF regulation. Detection of long-lived gravitational echoes, ghost lensing scaffolds, or PNCP-encoded entropy caps would favor TGIU’s informational ontology over GR’s geometry-only account.</p>
title General Relativity vs TGIU (Universal Gravitational Informational Theory) _ Ghost Memory, Spacetime Curvature, and the Ontology of Gravity
url https://doi.org/10.5281/zenodo.17115245