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March 30, 20260 citationsOpen Access

The Topological Resonance Hypothesis v10.0: Bounded Randomness, Logical Fabric Constitution, and the Unified Dark Sector

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DSDavid Stamboltsyan

Key Points

  • The study explores a conceptual framework connecting Bounded Randomness with quantum mechanics and philosophical implications.
  • Introduced concepts such as Planck time and dilaton field to establish theoretical foundations.
  • Formulated link between quantum probability and Gödelian incompleteness to address fundamental questions.
  • Critiqued models of quantum consciousness and decoherence within a structured theoretical approach.
  • Established Planck time as a fundamental constraint in quantum mechanics.
  • Demonstrated how Gödelian incompleteness relates to quantum probability and reality.
  • Showed that dilaton field plays a crucial role in understanding logical structures within physics.

Abstract

This work introduces the term 'Bounded Randomness' as an original conceptual framework by the author, defining randomness as a computational resource constrained by physical budget. V5. 4 introduces the Entanglement Density parameter DE formally linked to von Neumann entanglement entropy, establishes the Planck time as the absolute lower bound on the phase transition timescale, and introduces a formal critique of gradient decoherence models as physically inconsistent with conservation laws. V6. 1 introduces the Macroscopic Restrictive Barrier — a thermodynamically irreversible stabilization mechanism explaining structural integrity of macroscopic objects — formalizes the Unified Dark Sector as two opposing consequences of a single unknotting process, adds the Correspondence Principle bridging the hypothesis to standard Quantum Mechanics, and clarifies that unrealized probabilistic branches are strictly virtual computational possibilities, not parallel realities. V7. 2 introduces a Foundational Philosophy section establishing logic as the constitutive fabric of reality (The Background Operator Problem), formally connecting quantum probability to Gödelian incompleteness via Cubitt et al. (2015), and linking the dilaton field Φ to the Logical Language of the Fabric. V8. 3 resolves the black hole information paradox through a finite topological core bounded by Planck density, introduces the three-act particle model, and establishes black hole evaporation as a necessary condition for conformal rebirth. V9. 0 introduces the Author's Note on Working Methodology (transparent disclosure of age, role of AI tools, and epistemological limits), formalizes the four-tiered categorical hierarchy of reality as a Conceptually Isomorphic Framework (Logic → Laws → Space → Time), and introduces Section 5. 4: a deductive critique of quantum consciousness theories (Orch-OR), demonstrating their thermodynamic invalidity under the Macroscopic Restrictive Barrier. V9. 5 introduces three new authorial concepts: the ontological distinction between virtual quantum branches and macroscopic cognition (hallucinations are real macro-events, not virtual states), the formalization of the Dark Sector as equal deterministic properties of Space governed by the Laws layer and invariant across cycles, and the mathematical proof via Liouville measure that conformal rebirth invariably yields unique non-repeating topological configurations (P = 0). The critique of gradient decoherence models is restored as a dedicated section. V10. 0 introduces three new authorial concepts: "Logic, Truth, and Fundamentality" — formalizing logic as an absolute meta-rule and the sole condition for existence (true illogic is absolute nothingness, not chaos) ; "Meaning and Direction" — a mechanistic resolution of the question of meaning, distinguishing objective Direction (thermodynamic necessity) from subjective meaning (a local macroscopic phenomenon generated via Bounded Randomness) ; and a dedicated section "Heuristic Estimates and Phenomenological Models" separating all phenomenological constructs from core architecture. Open Questions are expanded to include the cosmological scaling law of ρinfo (a), compatibility with FLRW equations and Bianchi identities, and the formal derivation of the galactic density profile from ρinfo.

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Cite This Study

David Stamboltsyan (2026) studied this question.

synapsesocial.com/papers/69c9c5a4f8fdd13afe0bdac5https://doi.org/10.5281/zenodo.19295460
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