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| Formato: | Recurso digital |
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Zenodo
2026
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| Acceso en línea: | https://doi.org/10.5281/zenodo.18218360 |
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- <p>Abstract This work proposes a geometric resolution to Bell's theorem that preserves Einstein's requirement for local causality. We argue that the apparent nonlocality of quantum mechanics in 3+1D spacetime is a projection of strictly local dynamics occurring in an extended CPT-symmetric dual-universe phase space ("Siamese Universes"). In this framework, entangled particles are not separate entities communicating faster than light, but single, continuous objects spanning two time-reversed universes via a shared global phase coordinate (Δϕ).</p> <p>Key Contributions</p> <pre><code>Restoration of Einstein Locality: We demonstrate that locality is preserved in the full CPT-Siamese manifold (MCPT), reconciling local realism with the violations of Bell inequalities observed in laboratory experiments.</code></pre>