The Atomic Spiral 1: Beyond Wave/Particle Dualism, the Electron as a Spiral Structure
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| Format: | Recurso digital |
| Sprache: | Englisch |
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2025
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| _version_ | 1866902033801412608 |
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| author | Paolo, Viscariello |
| author_facet | Paolo, Viscariello |
| contents | <p>The Atomic Spiral 1: Beyond Wave/Particle Dualism, the Electron as a Spiral Structure" presents a novel theoretical framework that reinterprets the electron not as a dual wave-particle entity, but as a coherent spiral structure governed by the golden ratio (φ³). This paper demonstrates how the standard quantum mechanical description of the electron can be understood as a radial projection of a more complete spiral geometry. The model explains quantum phenomena—including orbital structure, wave function collapse, and interference patterns—as natural consequences of the spiral's coherent phase. Experimental evidence supporting this interpretation includes the mathematical correspondence between neutron decay energy and φ³, cross-section data exhibiting golden ratio scaling (α ≈ -1/φ), and the ability to derive quantum orbitals from spiral harmonics. By reframing quantum mechanics through spiral geometry, this work offers a potential resolution to the wave-particle duality that has puzzled physics for a century, suggesting that quantum "strangeness" may be an artifact of incomplete observation rather than an intrinsic property of reality.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_16789429 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | The Atomic Spiral 1: Beyond Wave/Particle Dualism, the Electron as a Spiral Structure Paolo, Viscariello Quantum mechanics, Wave-particle duality, Phi cubed (φ³), Golden ratio, Spiral structure, Electron model, Schrödinger equation, Quantum coherence, Phase geometry, Orbital theory, Landau potential, Logarithmic scaling, Geometric quantum mechanics, Harmonic resonance, Non-dualistic physics <p>The Atomic Spiral 1: Beyond Wave/Particle Dualism, the Electron as a Spiral Structure" presents a novel theoretical framework that reinterprets the electron not as a dual wave-particle entity, but as a coherent spiral structure governed by the golden ratio (φ³). This paper demonstrates how the standard quantum mechanical description of the electron can be understood as a radial projection of a more complete spiral geometry. The model explains quantum phenomena—including orbital structure, wave function collapse, and interference patterns—as natural consequences of the spiral's coherent phase. Experimental evidence supporting this interpretation includes the mathematical correspondence between neutron decay energy and φ³, cross-section data exhibiting golden ratio scaling (α ≈ -1/φ), and the ability to derive quantum orbitals from spiral harmonics. By reframing quantum mechanics through spiral geometry, this work offers a potential resolution to the wave-particle duality that has puzzled physics for a century, suggesting that quantum "strangeness" may be an artifact of incomplete observation rather than an intrinsic property of reality.</p> |
| title | The Atomic Spiral 1: Beyond Wave/Particle Dualism, the Electron as a Spiral Structure |
| topic | Quantum mechanics, Wave-particle duality, Phi cubed (φ³), Golden ratio, Spiral structure, Electron model, Schrödinger equation, Quantum coherence, Phase geometry, Orbital theory, Landau potential, Logarithmic scaling, Geometric quantum mechanics, Harmonic resonance, Non-dualistic physics |
| url | https://doi.org/10.5281/zenodo.16789429 |