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March 6, 20260 citationsOpen Access

Regime Dynamics Coherence Geometry, Admissible Flows and Quantum Analogues in Basic Ontodynamics

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AMAndrii Myshko

Key Points

  • The aim is to explore the geometric nature of regime dynamics in Basic Ontodynamics and its implications for quantum and relativistic physics.
  • Developed a framework for admissible regime flows based on coherence thresholds.
  • Derived equations analogous to the Schrödinger equation and Dirac equation for phase evolution.
  • Analyzed collective phase fields and their relation to Maxwell equations.
  • Identified a natural geometry on the regime manifold that resembles the Fubini–Study geometry.
  • Found structural analogs to Schrödinger and Dirac equations in the behavior of regimes.
  • Demonstrated that coherence geometry could unify quantum and relativistic dynamics.

Abstract

Basic Ontodynamics describes physical reality as a hierarchy of interacting process regimes. Objects arise through coherent activation (CoAct) when regime configurations exceed a coherence threshold and exhaust admissible transverse generators. The present work develops the dynamical continuation of this framework. Instead of postulating a single fundamental equation, we derive a structural class of admissible regime flows constrained by the principle of constitutive unattainability. We show that the coherence norm induces a natural geometry on the regime manifold closely related to the Fubini–Study geometry of quantum state space. Phase evolution of regime amplitudes admits an equation structurally analogous to the Schrödinger equation. When regime amplitudes are organized into paired chiral structures the evolution acquires a first-order relativistic form analogous tothe Dirac equation. Furthermore, collective phase fields generated by interacting regimes lead to dynamical equations structurally similar to Maxwell equations. These results suggest that quantum and relativistic structures may arise from coherence geometry of interacting regimes.

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Cite This Study

Andrii Myshko (2026) studied this question.

synapsesocial.com/papers/69aa70e7531e4c4a9ff5b1ebhttps://doi.org/10.5281/zenodo.18857199
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