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November 22, 20253 citationsOpen Access

The IXUS Protocol 3.2 — Systematic Layer-to- Layer Correspondence Between Ontological Layers and Physics-Facing Descriptions — Kernel Architecture Patch

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SKSakamoto Keiji

Key Points

  • Correspondence clarifies alignment of descriptions like geometry and information across layers.
  • The core finding shows how effective descriptions govern mappings through structured logic.
  • Formalization involves observer vectors and layer semantics to ensure correspondence, not strict isomorphism.
  • Significance may highlight novel approaches for understanding complex systems in physics and information theory.

Abstract

Paper B(EN, v2.0|IXUS Protocol 3.2) We formalize IXUS Protocol 3.2 — Kernel Architecture Patch as a structure-preserving correspondence between ontological layers (Structure × Observation) and physics-facing descriptions. The protocol constrains mappings by observer vectors, priority stacks, and layer semantics, yielding a structured correspondence (not strict isomorphism). This clarifies how effective descriptions (fields, geometry, information) align across layer transitions and how kernel-level logic governs Observer-dependent mapping. Paired work: “The Dualbind Gravity Model” (Paper A v2.0).For correspondence: laboratory@dualbind.com. License: CC BY 4.0. Paper B(JA, v2.0|IXUS Protocol 3.2) IXUS Protocol 3.2 — Kernel Architecture Patch を、存在層( Structure × Observation )と物理記述をつなぐ 構造対応として定式化する。観測者ベクトル、プライオリティスタック、層セマンティクスにより写像を制約し、同型ではなく “構造化された対応” を与える。これにより、場・幾何・情報といった 有効記述 が層遷移に沿って整列し、Kernel レベルの論理が 観測者依存の写像 を統御することが明瞭になる。対となる文書: “The Dualbind Gravity Model”( Paper A v2.0 )。連絡先:laboratory@dualbind.com。License:CC BY 4.0。 Paired paper: “The Dualbind Gravity Model” (Concept DOI: 10.5281/zenodo.17605267).

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Cite This Study

Sakamoto Keiji (2025) studied this question.

synapsesocial.com/papers/6924e3ddc0ce034ddc34e817https://doi.org/10.5281/zenodo.17678534
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