I11 Spiral Phase Projection: A Quantized Reformulation of the Aharonov–Bohm Effect

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1. Verfasser: Boulfoul, Sebastian
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Veröffentlicht: Zenodo 2026
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author Boulfoul, Sebastian
author_facet Boulfoul, Sebastian
contents <p>A geometric reformulation of the Aharonov–Bohm effect based on the I11 spiral quantization framework. Phase is treated as projected energy geometry within the interval [0,11], with spiral depth determined directly from spectral structure. The approach replaces field-mediated interaction with geometric phase continuity, interprets particles as phase holonomies, and derives force as a local derivative of projected phase. The conventional Aharonov–Bohm phase emerges as the linear limit of the I11 projection. The framework introduces spiral resonance via the base sequence (2/11, 1/11, 2/11, 2/11, 4/11) and provides a structurally quantized interpretation of interference, tunneling, and relational locality.</p> <p> </p> <p>Contact: nmb99@outlook.de</p>
format Recurso digital
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publishDate 2026
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spellingShingle I11 Spiral Phase Projection: A Quantized Reformulation of the Aharonov–Bohm Effect
Boulfoul, Sebastian
Aharonov–Bohm Effect
Interference
Geometric Phase
Fractal Quantization
Projection Boundaries
Prime Numbers
Spiral Quantization
Nonlocality Reinterpretation
Quantum Foundations
I11 Framework
Physics
Physics
Mathematical physics
Laser physics
Physics/instrumentation
Physics/methods
Physics/standards
Nuclear physics
Transport (physics)
Particle physics
Nuclear physics
Atomic physics
Quantum physics
Physics/education
Solar physics
Theoretical physics
Mesoscopic physics
Mathematics
Mathematics
Quantum optics
<p>A geometric reformulation of the Aharonov–Bohm effect based on the I11 spiral quantization framework. Phase is treated as projected energy geometry within the interval [0,11], with spiral depth determined directly from spectral structure. The approach replaces field-mediated interaction with geometric phase continuity, interprets particles as phase holonomies, and derives force as a local derivative of projected phase. The conventional Aharonov–Bohm phase emerges as the linear limit of the I11 projection. The framework introduces spiral resonance via the base sequence (2/11, 1/11, 2/11, 2/11, 4/11) and provides a structurally quantized interpretation of interference, tunneling, and relational locality.</p> <p> </p> <p>Contact: nmb99@outlook.de</p>
title I11 Spiral Phase Projection: A Quantized Reformulation of the Aharonov–Bohm Effect
topic Aharonov–Bohm Effect
Interference
Geometric Phase
Fractal Quantization
Projection Boundaries
Prime Numbers
Spiral Quantization
Nonlocality Reinterpretation
Quantum Foundations
I11 Framework
Physics
Physics
Mathematical physics
Laser physics
Physics/instrumentation
Physics/methods
Physics/standards
Nuclear physics
Transport (physics)
Particle physics
Nuclear physics
Atomic physics
Quantum physics
Physics/education
Solar physics
Theoretical physics
Mesoscopic physics
Mathematics
Mathematics
Quantum optics
url https://doi.org/10.5281/zenodo.18456053