The Kernel Ontology Principle: Foundations for a Unified Fundamental Equation

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Autore principale: Katerina, Havrankova
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Lingua:inglese
Pubblicazione: Zenodo 2025
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author Katerina, Havrankova
author_facet Katerina, Havrankova
contents <p>This work introduces the Kernel Ontology Principle (KOP), a meta-framework in theoretical physics proposing that every coherent universe originates from a <strong>minimal relational structure</strong> – its Kernel. All higher-order physical laws, mathematical formalisms and emergent complexities arise as projections of this foundational structure. In contrast to the Mathematical Universe Hypothesis, which equates reality with mathematics, KOP argues that mathematics is an <strong>epistemic representation</strong> of a deeper ontological architecture encoded in the Kernel. In its strong formulation, this structure can be compressed into a single generative relation – the <strong>Fundamental Kernel Relation (FKR)</strong>.</p> <p>The goal of KOP is to explain why mathematics unifies physical laws so effectively and why diverse physical theories share deep structural symmetries. Unification, in this view, is not a coincidence but a natural consequence of a universe generated by a minimally sufficient relational core. This provides a principled account of the consistency between quantum theory, geometry, thermodynamics and information.</p> <p>KOP establishes a three-layer ontological hierarchy:<br>• <strong>Ontology</strong> – the Kernel as the primary relational substrate.<br>• <strong>Epistemology</strong> – mathematics as the representational language of Kernel relations.<br>• <strong>Physics</strong> – effective laws arising from Kernel structure across scales.<br>This hierarchy explains the universality of mathematics and the cross-scale coherence observed in empirical science.</p> <p>KOP also connects with other components of the author’s information-based cosmological framework. In <a href="https://doi.org/10.5281/zenodo.17694375"><strong>Information-Centric Cosmogenesis (ICC)</strong></a>, universes arise from minimal informational kernels that become autonomous physical domains once relational complexity reaches a critical threshold. ICC provides the cosmogenetic setting in which KOP’s Kernel concept becomes operational. The <a href="https://doi.org/10.5281/zenodo.17713324"><strong>Energy–Information Continuity Hypothesis (EIK)</strong></a> complements this by proposing that informational change has an energetic cost, implying that kernel formation is fundamentally energetic as well as relational. The <strong><a href="https://doi.org/10.5281/zenodo.17677395">Dark Energy as Topological Pressure (DETP)</a></strong> model extends these ideas to cosmology by interpreting cosmic acceleration as a geometric response to increasing relational complexity, offering a large-scale manifestation of Kernel-level invariants.</p> <p>Methodologically, KOP introduces a three-path reconstruction program:</p> <ol> <li> <p><strong>Cross-scale analysis</strong> to identify persistent relational invariants.</p> </li> <li> <p><strong>Diachronic extrapolation</strong> toward structurally minimal early-universe states.</p> </li> <li> <p><strong>Axiomatic minimisation</strong> to isolate the essential relational requirements for any self-consistent universe.</p> </li> </ol> <p>KOP is designed to be testable and falsifiable. It predicts specific relational invariances, provides explicit conditions for empirical violation and constrains any attempt at a unified fundamental equation. As part of the linked ICC–EIK–DETP framework, KOP offers an ontological foundation for a fully information-centric understanding of physical law, spacetime geometry and cosmological evolution.</p> <p> </p> <div> <div> <div> <div> <p><strong>For feedback or questions, contact:</strong> kh.researc@gmail.com</p> </div> </div> </div> </div>
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language eng
publishDate 2025
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spellingShingle The Kernel Ontology Principle: Foundations for a Unified Fundamental Equation
Katerina, Havrankova
Kernel Ontology Principle
Kernel
Ontology
Meta-mathematics
Foundations of Physics
Unified Theory
Theory of Everything
Relational Physics
Invariants
Structural Realism
Mathematical Realism
Energy-Information Continuity
Information Theory
Cosmology
Quantum Gravity
Quantum Field Theory
General Relativity
Fundamental Equations
Mathematical Structures
Cosmogenesis
Emergence
Theoretical Physics
Quantum physics
General Relativity and Quantum Cosmology
Mathematical physics
Mathematical Physics
Cosmology and Nongalactic Astrophysics
Information Theory
Philosophy of Science
Metaphysics
Foundations of Physics
Complex Systems
Dark Energy
<p>This work introduces the Kernel Ontology Principle (KOP), a meta-framework in theoretical physics proposing that every coherent universe originates from a <strong>minimal relational structure</strong> – its Kernel. All higher-order physical laws, mathematical formalisms and emergent complexities arise as projections of this foundational structure. In contrast to the Mathematical Universe Hypothesis, which equates reality with mathematics, KOP argues that mathematics is an <strong>epistemic representation</strong> of a deeper ontological architecture encoded in the Kernel. In its strong formulation, this structure can be compressed into a single generative relation – the <strong>Fundamental Kernel Relation (FKR)</strong>.</p> <p>The goal of KOP is to explain why mathematics unifies physical laws so effectively and why diverse physical theories share deep structural symmetries. Unification, in this view, is not a coincidence but a natural consequence of a universe generated by a minimally sufficient relational core. This provides a principled account of the consistency between quantum theory, geometry, thermodynamics and information.</p> <p>KOP establishes a three-layer ontological hierarchy:<br>• <strong>Ontology</strong> – the Kernel as the primary relational substrate.<br>• <strong>Epistemology</strong> – mathematics as the representational language of Kernel relations.<br>• <strong>Physics</strong> – effective laws arising from Kernel structure across scales.<br>This hierarchy explains the universality of mathematics and the cross-scale coherence observed in empirical science.</p> <p>KOP also connects with other components of the author’s information-based cosmological framework. In <a href="https://doi.org/10.5281/zenodo.17694375"><strong>Information-Centric Cosmogenesis (ICC)</strong></a>, universes arise from minimal informational kernels that become autonomous physical domains once relational complexity reaches a critical threshold. ICC provides the cosmogenetic setting in which KOP’s Kernel concept becomes operational. The <a href="https://doi.org/10.5281/zenodo.17713324"><strong>Energy–Information Continuity Hypothesis (EIK)</strong></a> complements this by proposing that informational change has an energetic cost, implying that kernel formation is fundamentally energetic as well as relational. The <strong><a href="https://doi.org/10.5281/zenodo.17677395">Dark Energy as Topological Pressure (DETP)</a></strong> model extends these ideas to cosmology by interpreting cosmic acceleration as a geometric response to increasing relational complexity, offering a large-scale manifestation of Kernel-level invariants.</p> <p>Methodologically, KOP introduces a three-path reconstruction program:</p> <ol> <li> <p><strong>Cross-scale analysis</strong> to identify persistent relational invariants.</p> </li> <li> <p><strong>Diachronic extrapolation</strong> toward structurally minimal early-universe states.</p> </li> <li> <p><strong>Axiomatic minimisation</strong> to isolate the essential relational requirements for any self-consistent universe.</p> </li> </ol> <p>KOP is designed to be testable and falsifiable. It predicts specific relational invariances, provides explicit conditions for empirical violation and constrains any attempt at a unified fundamental equation. As part of the linked ICC–EIK–DETP framework, KOP offers an ontological foundation for a fully information-centric understanding of physical law, spacetime geometry and cosmological evolution.</p> <p> </p> <div> <div> <div> <div> <p><strong>For feedback or questions, contact:</strong> kh.researc@gmail.com</p> </div> </div> </div> </div>
title The Kernel Ontology Principle: Foundations for a Unified Fundamental Equation
topic Kernel Ontology Principle
Kernel
Ontology
Meta-mathematics
Foundations of Physics
Unified Theory
Theory of Everything
Relational Physics
Invariants
Structural Realism
Mathematical Realism
Energy-Information Continuity
Information Theory
Cosmology
Quantum Gravity
Quantum Field Theory
General Relativity
Fundamental Equations
Mathematical Structures
Cosmogenesis
Emergence
Theoretical Physics
Quantum physics
General Relativity and Quantum Cosmology
Mathematical physics
Mathematical Physics
Cosmology and Nongalactic Astrophysics
Information Theory
Philosophy of Science
Metaphysics
Foundations of Physics
Complex Systems
Dark Energy
url https://doi.org/10.5281/zenodo.17656342