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Main Author: arrabal, humberto
Format: Recurso digital
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Published: Zenodo 2025
Online Access:https://doi.org/10.5281/zenodo.15815368
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author arrabal, humberto
author_facet arrabal, humberto
contents <p>In 2019, IBM conducted a remarkable quantum experiment simulating the reversal of time within<br>a controlled quantum system. This work revisits that experiment through the lens of a theoretical<br>framework which defines a minimum kinetic energy threshold necessary for coherent state evolution.<br>By analyzing the connection between experimental fidelity and coherence time, we argue that a<br>minimum velocity is required to preserve quantum coherence long enough to allow meaningful state<br>transitions and reversibility. The findings suggest that IBM’s experiment supports the concept of<br>a critical velocity in quantum systems, highlighting a path toward the stabilization of qubits for<br>future quantum technologies.</p>
format Recurso digital
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publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle The Ultimate Discovery of the World: How to Stabilize Qubits in Quantum Computers — The Technology of the Future
arrabal, humberto
<p>In 2019, IBM conducted a remarkable quantum experiment simulating the reversal of time within<br>a controlled quantum system. This work revisits that experiment through the lens of a theoretical<br>framework which defines a minimum kinetic energy threshold necessary for coherent state evolution.<br>By analyzing the connection between experimental fidelity and coherence time, we argue that a<br>minimum velocity is required to preserve quantum coherence long enough to allow meaningful state<br>transitions and reversibility. The findings suggest that IBM’s experiment supports the concept of<br>a critical velocity in quantum systems, highlighting a path toward the stabilization of qubits for<br>future quantum technologies.</p>
title The Ultimate Discovery of the World: How to Stabilize Qubits in Quantum Computers — The Technology of the Future
url https://doi.org/10.5281/zenodo.15815368