Structural Differentiation Quantum Theory (SDQ) v1.1: Time and Interaction as Emergent Structural Ordering

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Auteur principal: Okino, Koji
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2026
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_version_ 1866901112716525568
author Okino, Koji
author_facet Okino, Koji
contents <p>This work presents Structural Differentiation Quantum Theory (SDQ) v1.1, <br>a minimal, unified, and falsifiable framework in which time and interaction <br>are not fundamental, but emerge from structural differentiation.</p> <p>In SDQ, time is defined as the ordering of irreversible structural change, <br>while interaction arises from the overlap of structural gradients. <br>Quantum states are interpreted as relational configurations within unresolved <br>structural networks rather than intrinsic probabilistic entities.</p> <p>The theory replaces fundamental assumptions with structural relations, <br>proposing that observables such as time, force, and probability are projections <br>of an underlying structural process.</p> <p>A single decisive observational test is introduced: <br>the SDQ-Correlation Test (SDQ-CT). <br>While standard quantum theory predicts constant maximal correlation, <br>SDQ predicts an intrinsic decay of correlation with structural connectivity:</p> <p>S(L_s) = 2√2 e^{-βL_s}</p> <p>A statistically significant dependence of correlation strength on structural <br>connectivity at fixed physical separation provides a direct and falsifiable <br>criterion distinguishing structural emergence from intrinsic randomness.</p> <p>All figures are reproducible via the included Python script.</p> <p>This framework provides a direct path toward experimental validation.</p>
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spellingShingle Structural Differentiation Quantum Theory (SDQ) v1.1: Time and Interaction as Emergent Structural Ordering
Okino, Koji
quantum theory emergence time interaction structural physics structural differentiation foundations of quantum mechanics Bell inequality correlation test nonlocality relational physics emergent time falsifiable theory minimal framework
<p>This work presents Structural Differentiation Quantum Theory (SDQ) v1.1, <br>a minimal, unified, and falsifiable framework in which time and interaction <br>are not fundamental, but emerge from structural differentiation.</p> <p>In SDQ, time is defined as the ordering of irreversible structural change, <br>while interaction arises from the overlap of structural gradients. <br>Quantum states are interpreted as relational configurations within unresolved <br>structural networks rather than intrinsic probabilistic entities.</p> <p>The theory replaces fundamental assumptions with structural relations, <br>proposing that observables such as time, force, and probability are projections <br>of an underlying structural process.</p> <p>A single decisive observational test is introduced: <br>the SDQ-Correlation Test (SDQ-CT). <br>While standard quantum theory predicts constant maximal correlation, <br>SDQ predicts an intrinsic decay of correlation with structural connectivity:</p> <p>S(L_s) = 2√2 e^{-βL_s}</p> <p>A statistically significant dependence of correlation strength on structural <br>connectivity at fixed physical separation provides a direct and falsifiable <br>criterion distinguishing structural emergence from intrinsic randomness.</p> <p>All figures are reproducible via the included Python script.</p> <p>This framework provides a direct path toward experimental validation.</p>
title Structural Differentiation Quantum Theory (SDQ) v1.1: Time and Interaction as Emergent Structural Ordering
topic quantum theory emergence time interaction structural physics structural differentiation foundations of quantum mechanics Bell inequality correlation test nonlocality relational physics emergent time falsifiable theory minimal framework
url https://doi.org/10.5281/zenodo.19286336