Analytical Resolution of the Hierarchy Problem via Kirchhoff-Love Thin Plate Theory Applied to the Phase Continuum

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Autor principal: Novotný, Tomáš
Formato: Recurso digital
Lenguaje:inglés
Publicado: Zenodo 2026
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author Novotný, Tomáš
author_facet Novotný, Tomáš
contents <p>The Hierarchy Problem—the abyssal gap of approximately 42 orders of magnitude between the strength of electromagnetism and gravity—represents one of the greatest unsolved mysteries of the Standard Model. This paper offers an exact analytical resolution to this problem through the Hydro-Elastic Model (HEM). By defining our universe as a 3D phase membrane with a fundamental thickness of the Planck length (lp) embedded in a 4D space, we demonstrate that the difference between these forces is not a fundamental anomaly, but a classical engineering manifestation of continuum mechanics. Applying Kirchhoff-Love thin plate theory, we deduce that the ratio between in-plane shear stress (electromagnetism) and transverse bending (gravity) is exactly proportional to the square of the ratio of the Compton wavelength to the Planck length. Our analytical derivation matches the empirically measured force ratio between two electrons to 10 decimal places, thereby reducing the Hierarchy Problem to pure spatial geometry.</p> <div class="Truncate-cls2_h01 Truncate-cls1_d61"> <div> <div> <div class="WorkActions-cls2_ygq WorkActions-cls1_H7P"> <div class="DownloadButton-cls2_m_l DownloadButton-cls1_QHJ"> <div> <div class="Truncate-cls2_h01 Truncate-cls1_d61"> <p class="Truncate-cls2_Dti Truncate-cls1_HNI ds2-5-body-md">This short communication is based on the comprehensive theoretical framework 'The Universe as a Hydro-Elastic 4D Mechanism' (Archived at Zenodo: <a href="https://zenodo.org/records/19616545">DOI 10.5281/zenodo.19616545</a>).</p> </div> </div> </div> </div> </div> </div> </div>
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publishDate 2026
publisher Zenodo
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spellingShingle Analytical Resolution of the Hierarchy Problem via Kirchhoff-Love Thin Plate Theory Applied to the Phase Continuum
Novotný, Tomáš
Hierarchy Problem
Fundamental Forces
Fine-Structure Constant
Gravitational Constant
Continuum Mechanics
Kirchhoff-Love Theory
Thin Plate Theory
Scaling Law
Topological Transducer
Phase Membrane
Hydro-Elastic Model
Hydroelasticity
Problém hierarchie
Fundamentálne sily
Mechanika kontinua
Konštanta jemnej štruktúry
Teória tenkých dosiek
Škálovací zákon
Fázová membrána
Teoretická fyzika
Theoretical physics
Quantum physics
Classical mechanics
<p>The Hierarchy Problem—the abyssal gap of approximately 42 orders of magnitude between the strength of electromagnetism and gravity—represents one of the greatest unsolved mysteries of the Standard Model. This paper offers an exact analytical resolution to this problem through the Hydro-Elastic Model (HEM). By defining our universe as a 3D phase membrane with a fundamental thickness of the Planck length (lp) embedded in a 4D space, we demonstrate that the difference between these forces is not a fundamental anomaly, but a classical engineering manifestation of continuum mechanics. Applying Kirchhoff-Love thin plate theory, we deduce that the ratio between in-plane shear stress (electromagnetism) and transverse bending (gravity) is exactly proportional to the square of the ratio of the Compton wavelength to the Planck length. Our analytical derivation matches the empirically measured force ratio between two electrons to 10 decimal places, thereby reducing the Hierarchy Problem to pure spatial geometry.</p> <div class="Truncate-cls2_h01 Truncate-cls1_d61"> <div> <div> <div class="WorkActions-cls2_ygq WorkActions-cls1_H7P"> <div class="DownloadButton-cls2_m_l DownloadButton-cls1_QHJ"> <div> <div class="Truncate-cls2_h01 Truncate-cls1_d61"> <p class="Truncate-cls2_Dti Truncate-cls1_HNI ds2-5-body-md">This short communication is based on the comprehensive theoretical framework 'The Universe as a Hydro-Elastic 4D Mechanism' (Archived at Zenodo: <a href="https://zenodo.org/records/19616545">DOI 10.5281/zenodo.19616545</a>).</p> </div> </div> </div> </div> </div> </div> </div>
title Analytical Resolution of the Hierarchy Problem via Kirchhoff-Love Thin Plate Theory Applied to the Phase Continuum
topic Hierarchy Problem
Fundamental Forces
Fine-Structure Constant
Gravitational Constant
Continuum Mechanics
Kirchhoff-Love Theory
Thin Plate Theory
Scaling Law
Topological Transducer
Phase Membrane
Hydro-Elastic Model
Hydroelasticity
Problém hierarchie
Fundamentálne sily
Mechanika kontinua
Konštanta jemnej štruktúry
Teória tenkých dosiek
Škálovací zákon
Fázová membrána
Teoretická fyzika
Theoretical physics
Quantum physics
Classical mechanics
url https://doi.org/10.5281/zenodo.19653381