A Unified Continuous-Wave Interpretation of Quantum Phenomena: --- Phase Evolution, Non-Zero Energy, and a Reconsideration of Probability ---

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Main Author: Sugawara, Akihito
Format: Recurso digital
Language:English
Published: Zenodo 2026
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author Sugawara, Akihito
author_facet Sugawara, Akihito
contents <p>This paper presents a unified conceptual reinterpretation of quantum phenomena based on continuous wave evolution rather than intrinsic probabilistic ontology. By integrating prior conceptual analyses of wave–particle duality, phase evolution, non-zero energy states, and the interpretative status of probability and superposition, the work argues that the wave equation itself may provide a sufficient and complete dynamical description of physical behavior. Interference, diffraction, and localization are explained through deterministic phase evolution and boundary-condition interactions, while probability is repositioned as an a posteriori statistical description of measurement records rather than a foundational physical principle. The framework aims to simplify the conceptual structure of quantum theory and clarify the interpretive roles of phase, superposition, and observation without heavy reliance on mathematical formalism.</p>
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publishDate 2026
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spellingShingle A Unified Continuous-Wave Interpretation of Quantum Phenomena: --- Phase Evolution, Non-Zero Energy, and a Reconsideration of Probability ---
Sugawara, Akihito
quantum mechanics
wave equation
wave-particle duality
phase evolution
non-zero energy
probability interpretation
superposition
quantum interpretation
interference
double-slit experiment
conceptual physics
foundations of quantum theory
deterministic wave dynamics
measurement and localization
<p>This paper presents a unified conceptual reinterpretation of quantum phenomena based on continuous wave evolution rather than intrinsic probabilistic ontology. By integrating prior conceptual analyses of wave–particle duality, phase evolution, non-zero energy states, and the interpretative status of probability and superposition, the work argues that the wave equation itself may provide a sufficient and complete dynamical description of physical behavior. Interference, diffraction, and localization are explained through deterministic phase evolution and boundary-condition interactions, while probability is repositioned as an a posteriori statistical description of measurement records rather than a foundational physical principle. The framework aims to simplify the conceptual structure of quantum theory and clarify the interpretive roles of phase, superposition, and observation without heavy reliance on mathematical formalism.</p>
title A Unified Continuous-Wave Interpretation of Quantum Phenomena: --- Phase Evolution, Non-Zero Energy, and a Reconsideration of Probability ---
topic quantum mechanics
wave equation
wave-particle duality
phase evolution
non-zero energy
probability interpretation
superposition
quantum interpretation
interference
double-slit experiment
conceptual physics
foundations of quantum theory
deterministic wave dynamics
measurement and localization
url https://doi.org/10.5281/zenodo.18521262