Relativistic Effects on Quantum Decoherence: Time Dilation, Length Contraction, and Velocity-Enhanced Decoherence in the Quantum-to-Classical Transition
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2024
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| _version_ | 1866902057751937024 |
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| author | arrabal, humberto |
| author_facet | arrabal, humberto |
| contents | <p>This thesis presents a unified model for the quantum-to-classical transition by integrating relativistic <br>effects—such as time dilation and length contraction—with Humberto Arrabal’s velocity-enhanced <br>quantum decoherence model. While traditional decoherence theories focus on environmental <br>interactions, this work expands the framework by demonstrating that particle velocity, particularly at <br>relativistic speeds, significantly accelerates quantum decoherence. The model applies Einstein’s <br>relativistic energy equation and Arrabal’s velocity-based criterion, showing that relativistic velocities <br>cause an earlier onset of classical behavior. The implications for quantum computing, cosmology, and <br>experimental designs are explored, including a proposal for empirical validation at CERN.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_13732601 |
| institution | Zenodo |
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| publishDate | 2024 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Relativistic Effects on Quantum Decoherence: Time Dilation, Length Contraction, and Velocity-Enhanced Decoherence in the Quantum-to-Classical Transition arrabal, humberto <p>This thesis presents a unified model for the quantum-to-classical transition by integrating relativistic <br>effects—such as time dilation and length contraction—with Humberto Arrabal’s velocity-enhanced <br>quantum decoherence model. While traditional decoherence theories focus on environmental <br>interactions, this work expands the framework by demonstrating that particle velocity, particularly at <br>relativistic speeds, significantly accelerates quantum decoherence. The model applies Einstein’s <br>relativistic energy equation and Arrabal’s velocity-based criterion, showing that relativistic velocities <br>cause an earlier onset of classical behavior. The implications for quantum computing, cosmology, and <br>experimental designs are explored, including a proposal for empirical validation at CERN.</p> |
| title | Relativistic Effects on Quantum Decoherence: Time Dilation, Length Contraction, and Velocity-Enhanced Decoherence in the Quantum-to-Classical Transition |
| url | https://doi.org/10.5281/zenodo.13732601 |