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| Format: | Recurso digital |
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Zenodo
2024
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| Online Access: | https://doi.org/10.5281/zenodo.13846023 |
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Table of Contents:
- <p>This thesis introduces a highly refined calculation of the Arrabal Critical Velocity for quantumclassical transitions, incorporating relativistic kinetic energy, quantum energy corrections, and <br>environmental factors. Unlike previous models, which relied on arbitrary parameters, this refined <br>model derives the critical velocity using a precise α\alphaα-parameter that includes contributions <br>from de Broglie wavelength, temperature effects, field interactions, and higher-order quantum <br>corrections. The resulting calculation provides a more accurate prediction of when quantum coherence<br>collapses into classical behavior, with applications in quantum computing, cosmology, and highenergy physics. Experiments at CERN using the Large Hadron Collider (LHC) are proposed to <br>validate the predictions.</p>