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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.13756062 |
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Table of Contents:
- <p>This thesis presents a novel extension of Schrödinger's equation, referred to as the ArrabalSchrödinger Modification, by introducing a collapse term that facilitates the quantum-to-classical <br>transition. The proposed equation includes a dynamic collapse term λ(m,V,t)\lambda(m, V, t)λ(m,V,t), <br>which depends on mass, volume, and time, providing a unified framework for understanding both <br>microscopic quantum systems and macroscopic classical systems. Through mathematical derivations <br>and numerical simulations, the research explores the behavior of systems before, during, and after <br>collapse, bridging the gap between quantum mechanics and classical physics. The thesis also discusses <br>potential experimental setups for testing the validity of the proposed model and its implications for <br>quantum computing and cosmology.</p>