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January 20, 20260 citationsOpen Access

Light as a Boundary Mode in Phase-Selective Realization

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LGLuka Gluvić

Key Points

  • The aim is to clarify the conceptual issues surrounding light's status in physics by redefining it within a phase-selective realization framework.
  • Analyzed relativistic kinematics, classical electrodynamics, and quantum field theory.
  • Examined implications of light as a boundary mode rather than a traveling physical object.
  • Investigated the realization structure that distinguishes admissible event sequences.
  • Light is proposed as a boundary mode characterized by phase structure rather than as a traveling object.
  • Wavelengths and frequencies are conceptualized through spatial and temporal projections.
  • Energy is observed only during interactions, not while the light propagates.

Abstract

This paper examines the ontological status of light within the framework of phase-selective realization. While light is conventionally described as a propagating wave or particle, such interpretations introduce persistent conceptual tensions, including the absence of a rest frame, proper time, and observable intermediate states. We show that these features are not anomalies but direct consequences of the realization structure underlying physical phenomena. By analyzing relativistic kinematics, classical electrodynamics, and quantum field theory, we demonstrate that none of these formalisms require light to exist as a traveling physical object. Instead, light emerges as a boundary mode: the saturation of the null realizability condition separating admissible from non-admissible event sequences. Within this view, wavelengths characterize spatial phase structure, frequencies arise only through projection onto realized temporal reference frames, and energy appears exclusively at interaction, not during propagation. The framework preserves all empirical predictions of Maxwell theory, relativity, and quantum electrodynamics, while offering a unified interpretational account consistent with phase-selective gravitation, gravitational lensing, and black hole boundary phenomena.

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Cite This Study

Luka Gluvić (2026) studied this question.

synapsesocial.com/papers/696f1ac19e64f732b51ef00dhttps://doi.org/10.5281/zenodo.18289472
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