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January 23, 20260 citationsOpen Access

Particles and Forces as Coherence Basins and Capacity Gradients

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PNPeter Nero

Key Points

  • To derive particles and forces as emergent structures based on coherence capacity dynamics and explore their implications.
  • Developed a theoretical framework based on coherence capacity transport and focusing theory.
  • Analyzed stability and dynamics of coherence basins and their associated forces.
  • Examined relationships between internal phase coherence and gauge connections.
  • Identified mass as integrated coherence weight and derived Newtonian motion in specific limits.
  • Reproduced Lorentz force conditions for phase-coherence preservation during transport.
  • Demonstrated gravity as a universal response to total coherence capacity distribution.

Abstract

We derive particles and forces as emergent structures in the dynamics of coherence capacity. Building on the transport and focusing theory of coherence capacity, we show that localized, persistent excitations correspond to stable coherence basins, while forces arise from gradients and flows of coherence capacity acting on those basins. Basin densities and centroid dynamics yield Newtonian motion in the narrow-basin limit, with mass identified as integrated coherence weight. Internal phase coherence leads to gauge connections and reproduces the Lorentz force as a condition for phase-coherence preservation during transport. Gauge charge appears as a basin invariant and is conserved within admissible regimes, while particle number need not be. In non-Abelian sectors, maintaining extended coherence exhausts capacity under separation, forcing recombination and yielding confinement with area-law behavior. Gravity emerges as the universal response to total capacity distribution. No fundamental point particles or force carriers are introduced; particles and forces arise from projection-based stability and capacity transport. The framework is model-independent and completes the coherence-capacity program by explaining the emergence of matter and interactions from admissibility constraints.

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Cite This Study

Peter Nero (2026) studied this question.

synapsesocial.com/papers/69730f59c8125b09b0d1f182https://doi.org/10.5281/zenodo.18322084
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