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May 2, 2026Open Access

A BFUT Pre-QCD Emergence Model: From the Spaticle Field to the First Quark-Class Excitation, and from Repeated First Units to Ordinary Hydrogen as the First Atom

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Authors

VSV. K. Sharma

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Overview

Theoretical model explores creation of hydrogen from pre-hydrogen components, indicating new insights in particle physics.

Key Points

  • This research aims to establish a continuous framework demonstrating how ordinary hydrogen emerges from quark-class excitations through a BFUT model.
  • Developed a toy free-energy functional for the first stable localized excitation.
  • Combined spaticle-field nucleation, threshold logic, and dynamic assembly simulation.
  • Mapped compact quark-class structure to hydrogen, yielding a proposed route for atom formation.
  • Demonstrated a stable localized excitation is favored over collapse or dispersion.
  • Identified a threshold logic structure with an asymmetric 3+1 organization for quark-class emergence.
  • Proposed ordinary hydrogen (protium) as the first stable atom within the BFUT continuity framework.

Cite This Study

V. K. Sharma (2026) studied this question.

synapsesocial.com/papers/69f5947e71405d493afff56ahttps://doi.org/10.5281/zenodo.19908215
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