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Teoria del Collasso Totale e Riassorbimento dello Spazio (CTRS): Formulazione Dinamica e Condizione al Bounce quantistico

Authors: Antonio ventola;

Teoria del Collasso Totale e Riassorbimento dello Spazio (CTRS): Formulazione Dinamica e Condizione al Bounce quantistico

Abstract

Questa versione aggiornata della Teoria del Collasso Totale e Riassorbimento dello Spazio (CTRS) amplia il modello cosmologico originale integrando un nuovo meccanismo basato sul comportamento effettivo di massa negativa in condizioni di curvatura estrema. Il modello CTRS descrive un universo che evolve verso un collasso gravitazionale globale, durante il quale non solo la materia, ma anche il dominio spaziale residuo viene progressivamente riassorbito, facendo aumentare la densità effettiva fino ad avvicinarsi al limite quantistico della densità di Planck. Al raggiungimento di questa soglia, la relatività generale classica non è più sufficiente: diventano necessari termini di correzione quantistica che impediscono la formazione di una singolarità fisica. Il collasso non procede quindi fino a un punto, ma si arresta a un raggio minimo quantistico, generando un rimbalzo quantistico (bounce) e avviando una nuova fase di espansione. L’estensione introdotta in questa versione esplora il ruolo di comportamenti gravitazionali assimilabili a una massa negativa efficace, che emergono naturalmente nella dinamica di forte curvatura vicino al raggio minimo. Questo meccanismo fornisce una spiegazione coerente per la fase gravitazionale repulsiva necessaria al rimbalzo e si integra perfettamente con le equazioni CTRS già formulate. La “massa negativa” non viene trattata come materia esotica, ma come effetto emergente della geometria e della densità prossima ai limiti di Planck. Nel complesso, il modello CTRS aggiornato delinea un ciclo cosmologico completo composto da: Collasso gravitazionale totale e riassorbimento dello spazio Raggiungimento del raggio minimo quantistico Fase repulsiva generata da comportamento di massa negativa efficace Rimbalzo quantistico e nuova espansione dell’universo Questo documento rappresenta la formulazione più completa e aggiornata del quadro cosmologico CTRS, combinando dinamiche geometriche di collasso, correzioni quantistiche e meccanismi repulsivi emergenti da comportamenti di massa negativa.

This updated version of the Theory of Total Collapse and Space Reabsorption (CTRS) expands the original cosmological framework by integrating an additional mechanism based on effective negative mass behavior. The CTRS model describes a universe that evolves toward a global gravitational collapse, during which not only matter but the spatial domain itself is progressively reabsorbed, causing the effective density to increase until approaching the Planck limit. At this threshold, quantum corrections prevent the formation of a singularity, leading instead to a rebound (quantum bounce) and the beginning of a new expansion phase. The new extension introduced in this version explores the role of negative mass–like gravitational responses arising from extreme curvature regimes. This mechanism provides a natural explanation for repulsive gravitational phases during the bounce and offers a coherent integration with the existing CTRS dynamics. The negative-mass behavior is treated as an emergent effective phenomenon rather than exotic matter, preserving physical consistency. Together, these components refine the CTRS cosmological cycle: Global collapse and space reabsorption Quantum-limited minimum radius Effective negative-mass repulsive phase Bounce and renewed expansion This document represents the most complete and updated formulation of the CTRS framework, combining geometric collapse dynamics with quantum-gravitational corrections and effective negative-mass behavior.

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selected citations
These citations are derived from selected sources.
This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Citations provided by BIP!
popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
BIP!Impulse provided by BIP!
0
Average
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