Topological Intersection of Worldlines and Material Non-Uniqueness in High-$\gamma$ Minkowskian Configurations
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We identify a topological anomaly in Special Relativity (SR) arising from specific spacetime configurations at subluminal velocities ($v < c$). We demonstrate that for high Lorentz factors ($\gamma > 10^4$), the worldline of a massive object can intersect a single spatial hypersurface multiple times without violating causality constraints. This phenomenon, which we term \textit{Emergent Retrocausality}, challenges the axiom of "Ontological Uniqueness" of matter. By introducing a configuration function $f$ and analyzing the energy-momentum tensor $T^{\mu\nu}$, we prove that material duplication is a valid solution to the field equations in a multi-sheeted interpretation of Minkowski spacetime. This manuscript is current in Official Peer Review. Not final version.Copyright©2026 Alex De Giuseppe.All rights reserved. This work is protected by copyright. Any form of plagiarism, unauthorized reproduction, or misappropriation of ideas, mathematically results, or text without proper citation constitutes a violation of academic and intellectual property standards and common laws. No commercial use, adaptation, or derivative works are permitted without explicit written permission from the author. For correspondence, citations, collaboration inquiries, or feedback please contact:degiuseppealex@gmail.com The hash files that determine ownership have been created



