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June 3, 20260 citationsOpen Access

Charge in EAS Scalar Fields: Handed Supports, Exterior SOO Source Reports, and Finite Maxwell-Form Compression

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MLMichael Labhard

Key Points

  • This work aims to develop a novel scalar-field understanding of electric charge utilizing Entanglement Algebraic Spacetime (EAS).
  • Develops a framework for electric charge as a conserved scalar from handedness-induced responses.
  • Analyzes three-channel exterior source reports generated by coherent supports.
  • Applies findings to the finite Maxwell-form report equation, involving scalar-field contexts.
  • Establishes charge as a function of handedness and support interaction strength, distinguishing charge sign and relational strength.
  • Demonstrates that opposite-handed overlaps restore balance while same-handed overlaps imply repulsion.
  • Integrates finite charge-class input into the EAS spectral skeleton and Maxwell/QED equations, outlining charge dynamics.

Abstract

This paper is archived as a speculative research work. This paper develops the scalar-field origin of the finite electric-charge class in Entanglement Algebraic Spacetime (EAS). Charge is not introduced as a primitive scalar value, scalar sign, current, gauge field, photon, force, or spacetime field. It is identified as the conserved exterior full-cycle compression of handedness-induced second-order ordering (SOO) response from coherent bounded supports. A coherent handed support induces a three-channel exterior source report rhoH on coherent exterior receivers, and the unique additive, cyclically invariant, completed-support-normalized compression of this report gives the finite charge class Qₕat = CQ (rhoH). The paper further distinguishes charge sign from relationship strength: charge sign is support-handedness orientation, while interaction strength is the degree of coherent relational-path participation. Opposite-handed overlap restores local handedness balance and can pass into handedness-insensitive SOO recurrence; same-handed overlap creates local handedness imbalance and is read at the interface as repulsion-facing. The same source report can be organized into a finite report-level exterior source-response equation, and its compressed charge class enters a finite Maxwell-form report equation. When Qₕat is inserted into the EAS finite QED spectral skeleton and paired with the spacetime spectral triple in the NCG construction, it supplies the finite charge-class input for the Maxwell/QED source equation. The result gives a scalar-field account of charge class, sign, additivity, conservation, finite Maxwell-form source structure, and photon-like mediation; it does not derive the empirical coupling e, the fine-structure constant, continuum spacetime, scattering amplitudes, or the full quantized QED path integral.

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Cite This Study

Michael Labhard (2026) studied this question.

synapsesocial.com/papers/6a1fc76ddee9eb8c0dce845dhttps://doi.org/10.5281/zenodo.20481915
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Charge in EAS Scalar Fields: Handed Supports, Recurrent-Wave Current Reports, and Maxwell-Form Holonomy2026
  2. 2The Scalar-Field Origin of Electric Charge: Handed Bounded Matter and Relational Accommodation in the Entanglement-Algebraic Spacetime2026
  3. 3The Scalar-Field Origin of Electric Charge: Handed Bounded Matter and Relational Accommodation in the Entanglement-Algebraic Spacetime2026
  4. 4Scalar-Field Antecedents of Charge-Sector Reports and Interaction-Sign Readouts in EAS2026
  5. 5The Complete Derivation of QED from Scalar Fields Using Noncommutative Geometry: QED from the EAS Finite Spectral Skeleton by Noncommutative Geometry2026