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March 30, 20260 citationsOpen Access

K-Factorization of Maxwell's Equations: Waveguide Modes, Phased Arrays, the Chu Limit, and Barrier Universality in Electromagnetic Systems

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AEAnthony W. Eckert

Key Points

  • This research aims to apply K-Factorization to Maxwell's equations and derive insights into waveguide modes and phased array behaviors.
  • Applied K-Factorization to derive waveguide mode structure and phased array behavior from Maxwell's equations.
  • Analyzed the Chu antenna limit as it relates to shape-scale separation.
  • Examined barrier universality on the Eckert manifold in the context of electromagnetic systems.
  • Identified distinct waveguide modes produced via K-Factorization.
  • Showed how phased arrays reveal behavior consistent with shape-scale separation.
  • Discussed the implications of the Chu limit in the context of electromagnetic theory.

Abstract

Applies K-Factorization to Maxwell's equations, deriving waveguide mode structure, phased array behavior, and the Chu antenna limit as manifestations of shape-scale separation on the Eckert manifold.

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Cite This Study

Anthony W. Eckert (2026) studied this question.

synapsesocial.com/papers/69c9c51bf8fdd13afe0bd0b8https://doi.org/10.5281/zenodo.19270773
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