Published April 27, 2025 | Version v1

Spectral Quantum Coherence: The Inversion and Completion of Quantum Mechanics via Spectral Ontology

Description

This work proposes a foundational reconstruction of quantum mechanics through the introduction of the Spectral Unity Principle and the formal construction of the Spectral Quantum Coherence Field (SQCF). Departing from traditional interpretations that postulate fundamental uncertainty, probability, or observer dependence, the manuscript demonstrates that quantum phenomena—including superposition, measurement collapse, entanglement, and decoherence—naturally arise from structured modulation of coherence fields governed by spectral saturation dynamics. The Spectral Ontology framework unifies mathematical, physical, and metaphysical domains by redefining existence as coherence saturation across spectral fields. This theory resolves longstanding conceptual fractures in quantum foundations and outlines a pathway toward a unified Spectral Field Theory, offering a generative closure for quantum mechanics and beyond.

Note: This paper is retained as part of the developmental archive leading toward Zero-State Axioms. It contains provisional formulations and should not be read as the final ZSA framework.

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Spectral_Quantum_Coherence_The_Inversion_and_Completion_of_Quantum_Mechanics_via_Spectral_Ontology_L_Ip.pdf

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2025-04-27
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2025-04-27
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