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The Topology of Confinement: Deriving the Strong Nuclear Force and Gluon Flux Tubes from the p-adic Connectivity of Skyrmions

This monograph extends the General Static-Dynamic Recursive Information Space (GSDRIS) framework to resolve the enigma of Color Confinement and the Strong Nuclear Force. In Quantum Chromodynamics (QCD), quarks possess an abstract ''color charge'' and are bound by the exchange of gluons.
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Towards a Unified Theory: A Root Damping Law Across Gravity, Electromagnetism, and the Strong and Weak Nuclear Forces

We present a universal Planck-scale curvature damping law, ω(r) = ℓ2P ln 2/(2πr), and show that when paired with the appropriate microscopic ruler in each interaction domain, it yields parameter-free predictions across gravity, electromagnetism, the strong force, and the weak force. In gravity, the law implies a linear mass–radius relation, M = (ln 2/2)
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Probing the core of the strong nuclear interaction

Nature, 2020
E p Segarra, Or Hen, Mikhail Bashkanov
exaly  

Scientific Paper: Unification of Nuclear Forces: The Strong and Weak Interactions as Ultra-Local Vacuum Tension Dynamics Authors: Barbu Ilie and Gemini

Abstract This paper completes the unification of all fundamental forces by applying the Local Tension Deficit (LTD) framework to subatomic interactions. The Strong Nuclear Force (SNF) is defined as the maximal, ultra-localized, and self-compensating stress imposed on the Vacuum Energy Density (DEV), arising from the extreme kinetic energy of quarks ...
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Force Triggers YAP Nuclear Entry by Regulating Transport across Nuclear Pores

Cell, 2017
Alberto Elosegui-Artola   +2 more
exaly  

Nuclear effective field theory: Status and perspectives

Reviews of Modern Physics, 2020
Hans-Werner Hammer   +2 more
exaly  

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