Microscopic_Derivation_of_Isolated_Defect_Splitting_and_Exterior_Gap_Reduction_in_Relational_Information_Quantum_Gravity

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Main Author: Van Vi, Dam
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Published: Zenodo 2026
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_version_ 1866901046342713344
author Van Vi, Dam
author_facet Van Vi, Dam
contents <p>This paper derives a microscopic defect-isolation and exterior-reduction framework for the chiral matter sector of RIQG. It shows that, in a finite-range separated-defect regime, the global chiral operator decomposes into local defect sectors together with an exterior vacuum sector, so that previously established localized index and anomaly-neutrality results follow directly from the microscopic structure rather than from an auxiliary splitting assumption. The work also shows that this decomposition is stable under admissible deformation and refinement, and that low-energy matter-spectrum questions reduce to finite local spectral problems below the exterior gap.</p> <p> </p> <p>Public research disclosure only. Reading, private study, scholarly discussion, and citation are permitted for non-commercial purposes with attribution. No commercial implementation, no software or hardware realization, no quantum-computing use, no geometric-computing deployment, no derivative implementation rights, and no patent or trade-secret license are granted by access to this record. For licensing inquiries, contact: damvanvi@gmail.com</p>
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publishDate 2026
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spellingShingle Microscopic_Derivation_of_Isolated_Defect_Splitting_and_Exterior_Gap_Reduction_in_Relational_Information_Quantum_Gravity
Van Vi, Dam
<p>This paper derives a microscopic defect-isolation and exterior-reduction framework for the chiral matter sector of RIQG. It shows that, in a finite-range separated-defect regime, the global chiral operator decomposes into local defect sectors together with an exterior vacuum sector, so that previously established localized index and anomaly-neutrality results follow directly from the microscopic structure rather than from an auxiliary splitting assumption. The work also shows that this decomposition is stable under admissible deformation and refinement, and that low-energy matter-spectrum questions reduce to finite local spectral problems below the exterior gap.</p> <p> </p> <p>Public research disclosure only. Reading, private study, scholarly discussion, and citation are permitted for non-commercial purposes with attribution. No commercial implementation, no software or hardware realization, no quantum-computing use, no geometric-computing deployment, no derivative implementation rights, and no patent or trade-secret license are granted by access to this record. For licensing inquiries, contact: damvanvi@gmail.com</p>
title Microscopic_Derivation_of_Isolated_Defect_Splitting_and_Exterior_Gap_Reduction_in_Relational_Information_Quantum_Gravity
url https://doi.org/10.5281/zenodo.19305843