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May 13, 20260 citationsOpen Access

Unified Coherence Geometry: A Common Action for Physical Fields

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BPB. PetersenRJRobert K. JohnsonABAlan Bruno

Key Points

  • The aim is to propose a unified geometric approach for understanding various physical fields through coherence geometry.
  • Introduced Unified Coherence Action as a variational principle for physical field equations.
  • Developed continuous coherence fields with amplitude and multi-phase structure.
  • Explored projections into diverse physical regimes including classical mechanics and quantum systems.
  • Established coherence transport as a fundamental concept across different physical regimes.
  • Interpreted key physical quantities like energy and momentum through coherence geometric principles.
  • Demonstrated variations in the action lead to familiar equations in mechanics and thermodynamics.

Abstract

This paper introduces a unified geometric formulation of Coherence Geometry for physical fields. It develops the Unified Coherence Action (UCA), a variational principle in which physical field equations are treated as domain-specific projections of a common coherence-geometric structure. The manuscript represents physical systems through continuous coherence fields with amplitude and multi-phase structure, and studies how constrained forms of the action project into familiar physical regimes, including classical mechanics, gravitation, electromagnetism, quantum systems, thermodynamic transport, hydrodynamic behavior, and relativistic field structure. Across these regimes, quantities such as energy, momentum, temperature, curvature, entropy, and quantization are interpreted through coherence transport, phase alignment, topological closure, and variational constraint. This record contains the original hash-committed foundation paper associated with Coherence Geometry Canon CDR-01. The PDF is released in the same form referenced by the CDR-01 provenance record so that the public file remains consistent with the recorded SHA-256 hash. Later documents may expand individual derivations, equivalent formulations, or domain-specific consequences, while this record preserves the original foundation statement.

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Cite This Study

Petersen et al. (2026) studied this question.

synapsesocial.com/papers/6a04151779e20c90b4444e97https://doi.org/10.5281/zenodo.20119489
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