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The Lunet and the Lunec: A New Spectral Paradigm for Wave-Particle Duality

Ebrahim E. Elsayed

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Source: Crossref

Published: Sep 15, 2026

DOI: 10.20944/preprints202607.2357.v11

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Source abstract

This work proposes The Lunet and The Lunec as the foundational elements of a spectral framework that integrates the Zero Pairs Interaction Functional, Unified Spectral Alignment and Coherence, and Zigzag Zero–Fractional Zero (ZPIF-USAC-ZZFZ) framework. This framework introduces the Lunet, a new spectral entity of light. It is neither a wave nor a quantum particle, but a spectral entity whose manifestation depends on its degree of spectral coherence (C). When C → 1, it appears as a wave. When C → 0, it appears as a photon. This proposal offers a potential resolution to the century-old wave-particle duality.The Lunec (Lunet Emission Coherence) is introduced as a theoretical device, supported by numerical simulations and mathematical models, with a proposed experimental protocol for future verification. Unlike conventional lasers, which rely on stimulated emission, the Lunec operates on the principle of spectral coherence, where the degree of coherence determines the manifestation of the emitted beam. When C → 1, the Lunec would emit a full-spectrum coherent beam, achieving an efficiency of up to 99%, far exceeding the Shockley-Queisser limit of 33.7%.The framework is grounded in the ZPIF-USAC-ZZFZ framework, which derives spectral interactions from the non-trivial zeros of the Riemann zeta function. Numerical simulations using the first 10,000 non-trivial zeta zeros confirm the convergence of the framework and the predicted behavior of the Lunet and Lunec. This is a theoretical proposal intended to stimulate discussion and further investigation.

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