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March 27, 20260 citationsOpen Access

Relativistic Dirac Analysis of Muonic Internal Conversion as a Pre-Equilibrium De-Excitation Pathway for Superheavy Nuclei

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ARAidan Rampair

Key Points

  • The study aims to explore muonic internal conversion as a de-excitation pathway for superheavy nuclei utilizing relativistic Dirac analysis.
  • Employs relativistic Dirac equations to analyze particle interactions.
  • Examines the role of muons in nuclear decay processes.
  • Considers laser-plasma interactions and their effects on nuclear stability.
  • Identifies muonic internal conversion as a significant pathway in the decay of superheavy nuclei.
  • Explores the implications of muon-catalyzed fusion within the context of superheavy elements.
  • Suggests connections to the Island of Stability, indicating potential for stable isotopes.

Abstract

Keywords: Superheavy Elements, Muon-Catalyzed Fusion, QED, Island of Stability, Nuclear Physics, Laser-Plasma Interaction, License: MIT License / Creative Commons Attribution 4.0 International

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Cite This Study

Aidan Rampair (2026) studied this question.

synapsesocial.com/papers/69c61ff615a0a509bde18534https://doi.org/10.5281/zenodo.19212568
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Muonic Internal Conversion as a Pre-Equilibrium De-Excitation Channel for Superheavy Nuclei2026
  2. 2Paper CLXIII: One-Octonion Positron-Mediated Muon-Antimuon Lepton Fusion via the G₂ Klein Ladder: True Muonium Formation by Charge Exchange, the π γ Channel Prediction2026
  3. 3Paper CLXIII: One-Octonion Positron-Mediated Muon-Antimuon Lepton Fusion via the G₂ Klein Ladder: True Muonium Formation by Charge Exchange, the π γ Channel Prediction2026
  4. 4Radiative decay of muonic molecules in resonance states2024
  5. 5Relativistic Entanglement in Muon Decay2026