THFR-1.5: The QCRS as a Biological Interface: Harmonic Consensus and the Limits of Informational Resolution

Concluding the foundational THFR series, this paper establishes the QCRS as a decelerating biomorphic filter driven by the Informational Quantum Field (IQF) loop. We introduce Morphological Isometry and Topological Anchors to explain why observers perceive a synchronized, deterministic 3D+1 world with fixed laws. Time is stripped of its independent dimension and mathematically formalized as a differential operator of topological state-comparison. Consequently, the paper demonstrates the absorption of Quantum Mechanics, redefining quantum uncertainty as the fundamental limit of intrinsic metric resolution. ***IMPORTANT OPERATIONAL NOTICE: The formal operational status, notation boundaries, and ontological interpretation of the formalisms deployed in this exploratory work are strictly governed and stabilized by the definitive axiomatic framework established in the unifying meta-document THFR-1.11. For critical peer review, methodological alignment, and strict priority of interpretation, see: Semenov, V. (2026). THFR-1.11: Canonical Notes and Ontological Unification of the First Series. Zenodo. https://doi.org/10.5281/zenodo.21063508***

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-14
DOI
https://doi.org/10.5281/zenodo.22746594
Primary Topic
Quantum Mechanics and Applications
Type
preprint
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preprint

THFR-1.5: The QCRS as a Biological Interface: Harmonic Consensus and the Limits of Informational Resolution

Vadym Semenov
Zenodo (CERN European Organization for Nuclear Research)
Quantum Mechanics and Applications
preprint

THFR-1.5: The QCRS as a Biological Interface: Harmonic Consensus and the Limits of Informational Resolution

Vadym Semenov
preprint en

Abstract

Concluding the foundational THFR series, this paper establishes the QCRS as a decelerating biomorphic filter driven by the Informational Quantum Field (IQF) loop. We introduce Morphological Isometry and Topological Anchors to explain why observers perceive a synchronized, deterministic 3D+1 world with fixed laws. Time is stripped of its independent dimension and mathematically formalized as a differential operator of topological state-comparison. Consequently, the paper demonstrates the absorption of Quantum Mechanics, redefining quantum uncertainty as the fundamental limit of intrinsic metric resolution. ***IMPORTANT OPERATIONAL NOTICE: The formal operational status, notation boundaries, and ontological interpretation of the formalisms deployed in this exploratory work are strictly governed and stabilized by the definitive axiomatic framework established in the unifying meta-document THFR-1.11. For critical peer review, methodological alignment, and strict priority of interpretation, see: Semenov, V. (2026). THFR-1.11: Canonical Notes and Ontological Unification of the First Series. Zenodo. https://doi.org/10.5281/zenodo.21063508***

Zenodo (CERN European Organization for Nuclear Research)
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Quantum Mechanics and Applications
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