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dcterms:description """Although contemporary high-energy physics and the Standard Model have successfully provided mathematical parameters for the rest mass of elementary particles through the Higgs Mechanism, this phenomenological setup based on field coupling has consistently failed to explain, from the underlying ontology of micro-mechanics, why objects possess "Inertia"—the resistance to changes in their state of motion. This research proposes the "Topological Ontology of Inertial Mass," thoroughly discarding the traditional presumption of classical physics that views mass as solid "stuff" or an inherent fundamental scalar property.
Based on the dual-vacuum architecture, this paper rigorously argues: elementary particles are by no means solid material corpuscles, but rather an "Information Deadlock" formed after wavefunctions encounter asynchronous truncation and spontaneous decoherence during their underlying compilation. This deadlock constructs a microscopic event horizon, with its outer shell rigidly encapsulating a small pocket of Absolute Vacuum (VA). When the system is in a "monomeric state" containing only a single singularity, lacking an internal counterpart and potential well, this geometric entity exhibits absolute topological transparency in its dynamics. Its inertial mass is constantly zero (m=0), manifesting the characteristics of a boson constrained to the speed of light.
The true manifestation of mass purely occurs when the system undergoes a phase transition to "internally containing multiple particles (singularities)." When an external strong constraint field (such as a gluon field or information boundary) forcibly binds two or more absolute vacuum singularities within the same microscopic particle horizon, based on the geometric logical paradox that absolute vacuums are "absolutely non-overlapping" at zero dimensions, an extreme geometric rebound approaching infinity instantly erupts within the system. This outward-bursting extreme repulsive force counterbalances the powerful centripetal binding force of the particle's outer shell, forming an extremely violent "Mechanical Deadlock" at the Planck scale.
Under this model, the physical essence of the "Rest Mass" we measure in the macroscopic world is precisely the physical pressure reading outputted to four-dimensional spacetime by mutually repulsive singularities endlessly striking and pushing against the particle's geometric boundary in extreme high-frequency oscillation, as if the microscopic particle were "stepping on a topological weighing scale." And the inertia in Newtonian mechanics (F=ma) is, in fact, the "Topological Stiffness" and powerful restoring force proactively exhibited by this extreme high-pressure stress system when facing external perturbations, in order to prevent the collapse of its geometric structure.
This research successfully reduces macroscopic physical mass entirely to pure geometric tension and internal conflict readings at the microscopic level. By shattering the illusion of matter's solidity, this model accomplishes a topological and kinematic grand unification of energy, mass, and the underlying repulsive force of the absolute vacuum, establishing the most rigorous mechanical reality for the origin of mass in the universe."""^^rdf:string ;
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dcterms:title "The Topological Ontology of Inertial Mass: Absolute Vacuum Repulsion and the Mechanical Deadlock Effect of Internal Particles"^^rdf:string ;
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