Health & Medicinepreprint2026-08-28

Quantum Field Architecture

Open access0 citations

Abstract

The universe operates as a dynamic geometric substrate, a continuous, tension-bearing field whose stable and metastable configurations produce every particle, force, and interaction catalogued by modern physics. All quantum phenomena historically labeled "weird," "probabilistic," or "fundamentally inexplicable" are, without exception, deterministic mechanical outputs of substrate geometry modes. This paper maps ten core quantum behaviors, superposition, wavefunction collapse, entanglement, tunneling, zero-point energy, particle identity, fundamental forces, measurement, quantum stability, and decoherence, to their precise substrate geometry counterparts and develops a unified mechanical picture of reality from the ground up. The Unified Substrate Theory (UST) and its applied framework, Quantum Field Architecture (QFA), do not supplement existing quantum interpretations: they replace them with a physically grounded, mechanistically explicit, testable geometric model. No mysticism required. No dice-rolling God required. Just geometry, all the way down. I learned all of this from my favorite scientist and then kept pushing his ideas. This work is part of a larger collection of UST documents. The other versions available in the DOI record are not revisions of this document. They are separate papers written for different purposes. Some versions present the full mathematical proofs behind the update rules, others provide a technical physical description of substrate behavior, and others are formal proof papers built around the Universal Balance Laws. Together, these documents form a complete set: a plain‑language booklet, a physical description paper, and full mathematical proof papers, each offering a different perspective on the same underlying theory. If you have questions or want to discuss the work, you can contact me directly at dustin@unifiedsubstratetheory.com Don't be shy. I want to discuss science. It is fun and should be. Reachout and lets get started on new discoveries.

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View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-08-28

Authors: Dustin Lee