Interface-Led Architecture and the Riemann Hypothesis: A System-Governance Heuristic for Prime Distribution and Dynamic Equilibrium

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Main Author: Sogawa, Takuya
Format: Recurso digital
Language:English
Published: Zenodo 2026
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_version_ 1866902030069530624
author Sogawa, Takuya
author_facet Sogawa, Takuya
contents <p>This technical note presents a conceptual and heuristic system-governance interpretation of the Riemann Hypothesis through Interface-Led Architecture (ILA). It does not claim to prove the Riemann Hypothesis.</p> <p>The paper maps primes to oscillatory Providers, zeta zeros to cancellation contracts, and the critical line to a governance boundary between divergent and over-damped prime-mode phases. It introduces a finite prime-mode energy model and uses the vocabulary of Provider, Observer, Operator, Contract, and Governance Boundary to organize the relationship between prime-side oscillations and analytic cancellation constraints.</p> <p>This reviewed edition strengthens the non-proof boundary by adding heuristic notes to major sections, explicit circularity warnings around RH-equivalent error estimates, a more concrete bridge to Riemann's explicit formula for the Chebyshev function, and an appendix of potentially misleading expressions and safer replacements. It also notes that implementation references, GitHub links, commit hashes, and function-to-interface mapping tables are deferred to a future version.</p> <p>The English manuscript is the canonical version. The Japanese manuscript is included as a companion translation.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_20351129
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Interface-Led Architecture and the Riemann Hypothesis: A System-Governance Heuristic for Prime Distribution and Dynamic Equilibrium
Sogawa, Takuya
AIKernel
Interface-Led Architecture
ILA
Riemann Hypothesis
Riemann Zeta Function
Prime Distribution
Prime Number Theory
Analytic Number Theory
System Governance
Dynamic Equilibrium
Prime-Mode Energy
Critical Line
Explicit Formula
Heuristic Model
Provider
Observer
Operator
Contract
<p>This technical note presents a conceptual and heuristic system-governance interpretation of the Riemann Hypothesis through Interface-Led Architecture (ILA). It does not claim to prove the Riemann Hypothesis.</p> <p>The paper maps primes to oscillatory Providers, zeta zeros to cancellation contracts, and the critical line to a governance boundary between divergent and over-damped prime-mode phases. It introduces a finite prime-mode energy model and uses the vocabulary of Provider, Observer, Operator, Contract, and Governance Boundary to organize the relationship between prime-side oscillations and analytic cancellation constraints.</p> <p>This reviewed edition strengthens the non-proof boundary by adding heuristic notes to major sections, explicit circularity warnings around RH-equivalent error estimates, a more concrete bridge to Riemann's explicit formula for the Chebyshev function, and an appendix of potentially misleading expressions and safer replacements. It also notes that implementation references, GitHub links, commit hashes, and function-to-interface mapping tables are deferred to a future version.</p> <p>The English manuscript is the canonical version. The Japanese manuscript is included as a companion translation.</p>
title Interface-Led Architecture and the Riemann Hypothesis: A System-Governance Heuristic for Prime Distribution and Dynamic Equilibrium
topic AIKernel
Interface-Led Architecture
ILA
Riemann Hypothesis
Riemann Zeta Function
Prime Distribution
Prime Number Theory
Analytic Number Theory
System Governance
Dynamic Equilibrium
Prime-Mode Energy
Critical Line
Explicit Formula
Heuristic Model
Provider
Observer
Operator
Contract
url https://doi.org/10.5281/zenodo.20351129