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January 25, 20260 citationsOpen Access

Electron Spin as Torsional Lock-in of MID Oscillation

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CRChadwick D Rasque

Key Points

  • The study aims to explore how electron spin can be understood as a consequence of torsional dynamics in MID oscillations.
  • Developed a model focusing on the torsional configuration of MID oscillations.
  • Analyzed how spin relates to the chirality and phase gradient orientation.
  • Examined the emergence of spin and magnetic moment alignment from substrate-level mechanisms.
  • Demonstrated that electron spin arises from a torsion-stabilized configuration of MID oscillations.
  • Found that the resulting structure acts as a two-state torsional mode with characteristics of spin-½ behavior.
  • Highlighted the integration of spin into broader MID dynamics through geometry and field coupling.

Abstract

This paper presents electron spin as a torsional lock‑in phenomenon of the MID substrate’s rank‑3 oscillatory dynamics. Instead of treating spin as an intrinsic quantum number, the model shows that spin arises when a coherent MID oscillation enters a torsion‑stabilized configuration, producing a locked chirality and phase‑gradient orientation. The resulting structure behaves as a two‑state torsional mode with quantized angular characteristics, matching the observed spin‑½ behavior without invoking intrinsic particle properties. This substrate‑level mechanism explains spin, magnetic moment alignment, and phase evolution as emergent features of torsion‑mode geometry and coherence‑field coupling. The framework provides a physically grounded alternative to abstract spinor postulates and integrates electron spin directly into the broader MID/QC substrate dynamics.

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Cite This Study

Chadwick D Rasque (2026) studied this question.

synapsesocial.com/papers/6975b24dfeba4585c2d6db9ahttps://doi.org/10.5281/zenodo.18347105
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