An Essay and Overview on the Reinterpretation of Modern Physics via Space-Matter Monism

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座を導入し、慣性の起源を流体力学における付加質量(Added":[370],"mass)として、重力を網目の構造緩和の巨視的現れとして定式化する。長波長極限における有効作用の導出と二次LIV(ローレンツ不変性の破れ)の定性的予測を示すとともに、特異点近傍等の極限環境においてレイノルズ・ダイレイタンシーに起因する異方的有効流体を適用し、アインシュタイン方程式系の自己整合的な閉鎖構造を示す。ただし、本記述は中心近傍における曲率発散を完全には回避できない有効場理論(EFT)としての限界を持つことを明示し、将来の微視的解像度への課題として位置づける。合わせて、超高エネルギーガンマ線観測や重力波の非検出エコー等に基づく定量的な棄却基準(KILL条件)を設定し、ポパー的反証可能性を厳格に担保する。":[371],"後半部の【Part":[372],"II:分野横断的展望編】では、数理的裏付けを要請しない発見的展望(思考実験)として、素粒子の世代数上限や微細構造定数、量子もつれにおける非局所的位相同期(ER=EPR仮説との幾何学的同型性)、および暗黒セクターのポリアモルフィズム(非晶質の液液相分離現象)など、現代物理学の未解決課題を材料力学的なアナロジーを用いて再解釈する。結語として、超弦理論、ループ量子重力理論、場の量子論、一般相対性理論という既存の卓越したパラダイムを、相互作用の時間スケールに依存する「レオロジー的分離マップ」として包括的に整理統合する。":[373],"本稿は絶対的な真理や究極理論(ToE)を僭称するものではない。形而上学的な論争を排し、既存理論との建設的な対話を通じて分野横断的なインスピレーションを喚起するための「テストベッド(思考の道具)」を、オープンサイエンスの場へ提供することを企図している。":[374]}

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Publication Details

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Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-21
DOI
https://doi.org/10.5281/zenodo.22867812
Primary Topic
Biofield Effects and Biophysics
Type
preprint
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preprint

An Essay and Overview on the Reinterpretation of Modern Physics via Space-Matter Monism

Patrascus Granulus Cartesius
Zenodo (CERN European Organization for Nuclear Research)
Biofield Effects and Biophysics
preprint

An Essay and Overview on the Reinterpretation of Modern Physics via Space-Matter Monism

Patrascus Granulus Cartesius
preprint en

Abstract

This manuscript presents an essay and overview of the "Spatial Structural Relaxation Model (SSRM)," a phenomenological research program that attempts to bridge the highly specialized descriptive languages of modern physics through a single ontology of "granular and continuum mechanics." Building upon the historical lineage of Space-Matter Monism explored by pioneers such as W. K. Clifford and A. Einstein, this model hypothesizes cosmic space as a "discrete and amorphous granular network." In the first half, [Part I: Empirical & Mathematical Section], we introduce a rheological perspective based on self-organized criticality and the Deborah number. We formulate the origin of inertia as added mass in fluid dynamics and gravity as the macroscopic manifestation of the network's structural relaxation. We demonstrate the derivation of the effective action in the long-wavelength limit and the qualitative prediction of quadratic Lorentz Invariance Violation (LIV). In extreme environments such as near singularities, we apply an anisotropic effective fluid originating from Reynolds dilatancy to show a self-consistently closed structure of the Einstein field equations. However, we explicitly state the applicability limit of this effective field theory (EFT), acknowledging that this description cannot completely avoid curvature divergence near the center, thereby positioning it as a future challenge requiring further microscopic resolution. Concurrently, we establish quantitative rejection criteria (KILL conditions) based on ultra-high-energy gamma-ray observations and non-detection of gravitational wave echoes, strictly ensuring Popperian falsifiability. In the second half, [Part II: Cross-Disciplinary Perspectives Section], presented as heuristic extensions (thought experiments) requiring no mathematical backing, we reinterpret unsolved problems in modern physics using materials-mechanical analogies. These include the upper limit of elementary particle generations, the fine-structure constant, non-local phase synchronization in quantum entanglement (geometrically isomorphic to the ER=EPR hypothesis), and the polyamorphism of the dark sector (liquid-liquid phase separation in amorphous media). As a conclusion, we comprehensively synthesize the existing outstanding paradigms—String Theory, Loop Quantum Gravity, Quantum Field Theory, and General Relativity—into a "rheological separation map" dependent on interaction timescales. This essay does not aim to assert an absolute truth or claim a Theory of Everything (ToE). Rather, it intends to exclude metaphysical debates and provide a robust "testbed (tool for thought)" to the open science community, evoking cross-disciplinary inspiration through constructive dialogue with existing theories. 本稿は、現代物理学の各分野における高度に専門化された記述言語を「粉体力学および連続体力学」という単一のオントロジーによって繋ぎ直すことを試みる、現象論的な研究プログラム「空間構造緩和モデル(SSRM)」を提示する試論(Essay)およびその大綱である。W. K. クリフォードや晩年のA. アインシュタインらが探求した空間物質一元論の歴史的系譜を踏まえ、本モデルは宇宙空間を「離散的かつ非晶質な粉体ネットワーク」と仮定する。 前半部の【Part I:実証・数理編】では、自己組織化臨界やデボラ数に基づくレオロジー的視座を導入し、慣性の起源を流体力学における付加質量(Added mass)として、重力を網目の構造緩和の巨視的現れとして定式化する。長波長極限における有効作用の導出と二次LIV(ローレンツ不変性の破れ)の定性的予測を示すとともに、特異点近傍等の極限環境においてレイノルズ・ダイレイタンシーに起因する異方的有効流体を適用し、アインシュタイン方程式系の自己整合的な閉鎖構造を示す。ただし、本記述は中心近傍における曲率発散を完全には回避できない有効場理論(EFT)としての限界を持つことを明示し、将来の微視的解像度への課題として位置づける。合わせて、超高エネルギーガンマ線観測や重力波の非検出エコー等に基づく定量的な棄却基準(KILL条件)を設定し、ポパー的反証可能性を厳格に担保する。 後半部の【Part II:分野横断的展望編】では、数理的裏付けを要請しない発見的展望(思考実験)として、素粒子の世代数上限や微細構造定数、量子もつれにおける非局所的位相同期(ER=EPR仮説との幾何学的同型性)、および暗黒セクターのポリアモルフィズム(非晶質の液液相分離現象)など、現代物理学の未解決課題を材料力学的なアナロジーを用いて再解釈する。結語として、超弦理論、ループ量子重力理論、場の量子論、一般相対性理論という既存の卓越したパラダイムを、相互作用の時間スケールに依存する「レオロジー的分離マップ」として包括的に整理統合する。 本稿は絶対的な真理や究極理論(ToE)を僭称するものではない。形而上学的な論争を排し、既存理論との建設的な対話を通じて分野横断的なインスピレーションを喚起するための「テストベッド(思考の道具)」を、オープンサイエンスの場へ提供することを企図している。

Zenodo (CERN European Organization for Nuclear Research)
Biofield Effects and Biophysics
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