Unified Framework for Phase-Modulated Nuclear Systems: From Hysteresis Theory to Radioactive Waste Neutralization v4.0
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2025
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| _version_ | 1866901099131174912 |
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| author | Manassero, Sebastián Héctor |
| author_facet | Manassero, Sebastián Héctor |
| contents | <div dir="ltr"> <p> </p> <blockquote> <p> </p> <p> </p> <p>“This work presents a speculative theoretical framework and does not claim experimentally validated waste neutralization.”</p> <p>This manuscript (v4.0) introduces a novel theoretical framework proposing that all material systems possess <strong>Internal Conjugate States (C)</strong><sup>2</sup>. We demonstrate that matter is a phase-dependent system governed by internal activation and cumulative degradation (D)<sup>3</sup>.</p> <p> </p> <p>Key highlights of this work include:</p> <p>* Mathematical Formalism: A first-order non-linear differential equation that defines phase dynamics and time emergence.</p> <p>* The Conjugate State Phase Reactor (CSPR): A modular, solid-state nuclear control system that eliminates critical mass requirements and meltdown risk</p> <p>* Isotope Neutralization: A protocol for resetting radioactive waste (Phase III) to stable states (Phase I) via inverse resonance pulses.</p> <p>* Strategic Defense: Theoretical basis for Phase Synchronization (PSB) for clean, fallout-free energy release.</p> <p>* Experimental Protocol: A proposed validation method using Americium-241 and tunable lasers to measure deviations in decay constants.</p> <p>This framework provides a deterministic path toward inherently safe nuclear energy and advanced space propulsion by transitioning from a physics of "chance and mass" to a physics of "control and phase"</p> <div> </div> <div> </div> <p> </p> </blockquote> <p><strong>3. Palabras Clave (Keywords):</strong></p> <ul> <li> <p><code>Non-equilibrium nuclear dynamics</code></p> </li> <li> <p><code>Conjugate State Phase Reactor</code></p> </li> <li> <p><code>Nuclear waste transmutation</code></p> </li> <li> <p><code>Advanced Space Propulsion</code></p> </li> <li> <p><code>Hysteresis in Nuclear Systems</code></p> </li> <li> <p> </p> <p><code>Sebastian Hector Manassero</code> <sup>10</sup></p> <div> </div> <p> </p> </li> </ul> <p><strong>4. Licencia (License):</strong></p> <div> <p dir="ltr">Creative Commons Attribution 4.0 International</p> <p dir="ltr">“El autor solicita que cualquier aplicación médica o comercial derive en acuerdos de colaboración o reconocimiento explícito.”</p> </div> <div> </div> </div> <p> </p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18014757 |
| institution | Zenodo |
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| publishDate | 2025 |
| publisher | Zenodo |
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| spellingShingle | Unified Framework for Phase-Modulated Nuclear Systems: From Hysteresis Theory to Radioactive Waste Neutralization v4.0 Manassero, Sebastián Héctor Non-equilibrium nuclear dynamics Conjugate State Phase Reactor Nuclear waste transmutation Advanced Space Propulsion Hysteresis in Nuclear Systems Sebastian Hector Manassero <div dir="ltr"> <p> </p> <blockquote> <p> </p> <p> </p> <p>“This work presents a speculative theoretical framework and does not claim experimentally validated waste neutralization.”</p> <p>This manuscript (v4.0) introduces a novel theoretical framework proposing that all material systems possess <strong>Internal Conjugate States (C)</strong><sup>2</sup>. We demonstrate that matter is a phase-dependent system governed by internal activation and cumulative degradation (D)<sup>3</sup>.</p> <p> </p> <p>Key highlights of this work include:</p> <p>* Mathematical Formalism: A first-order non-linear differential equation that defines phase dynamics and time emergence.</p> <p>* The Conjugate State Phase Reactor (CSPR): A modular, solid-state nuclear control system that eliminates critical mass requirements and meltdown risk</p> <p>* Isotope Neutralization: A protocol for resetting radioactive waste (Phase III) to stable states (Phase I) via inverse resonance pulses.</p> <p>* Strategic Defense: Theoretical basis for Phase Synchronization (PSB) for clean, fallout-free energy release.</p> <p>* Experimental Protocol: A proposed validation method using Americium-241 and tunable lasers to measure deviations in decay constants.</p> <p>This framework provides a deterministic path toward inherently safe nuclear energy and advanced space propulsion by transitioning from a physics of "chance and mass" to a physics of "control and phase"</p> <div> </div> <div> </div> <p> </p> </blockquote> <p><strong>3. Palabras Clave (Keywords):</strong></p> <ul> <li> <p><code>Non-equilibrium nuclear dynamics</code></p> </li> <li> <p><code>Conjugate State Phase Reactor</code></p> </li> <li> <p><code>Nuclear waste transmutation</code></p> </li> <li> <p><code>Advanced Space Propulsion</code></p> </li> <li> <p><code>Hysteresis in Nuclear Systems</code></p> </li> <li> <p> </p> <p><code>Sebastian Hector Manassero</code> <sup>10</sup></p> <div> </div> <p> </p> </li> </ul> <p><strong>4. Licencia (License):</strong></p> <div> <p dir="ltr">Creative Commons Attribution 4.0 International</p> <p dir="ltr">“El autor solicita que cualquier aplicación médica o comercial derive en acuerdos de colaboración o reconocimiento explícito.”</p> </div> <div> </div> </div> <p> </p> |
| title | Unified Framework for Phase-Modulated Nuclear Systems: From Hysteresis Theory to Radioactive Waste Neutralization v4.0 |
| topic | Non-equilibrium nuclear dynamics Conjugate State Phase Reactor Nuclear waste transmutation Advanced Space Propulsion Hysteresis in Nuclear Systems Sebastian Hector Manassero |
| url | https://doi.org/10.5281/zenodo.18014757 |