Reassessing Quantum Correlational Paradigms: A Critical Examination of Entangled States in High-Energy Physics

Authors

  • Ella Collins D.Sc
  • Alex Anderson PhD
  • Nico Garcia Dr. Sc
  • Robin Robinson Professor

Keywords:

Quantum entanglement, High-energy physics, Bell's theorem, Computational simulations, Entangled states, Quantum correlations, Statistical significance, Physics methodologies, Quantum computing

Abstract

The study critically re-evaluates established theories surrounding quantum entanglement, particularly in the context of high-energy physics. Utilizing advanced computational models, we explore the limitations of traditional interpretations of Bell's theorem. Through empirical analysis involving both analytical and numerical methods, we quantify entanglement measures under varying conditions. Our findings reveal significant deviations from previously accepted thresholds, indicating that established models may be insufficient for contemporary applications. This research highlights the necessity for a paradigm shift in understanding quantum correlations in high-energy scenarios, suggesting that further exploration is warranted to bridge gaps in existing literature.

Author Biographies

Ella Collins, D.Sc

D.Sc
University of Cambridge
The Old Schools, Trinity Lane, Cambridge, CB2 1TN, United Kingdom

Alex Anderson, PhD

PhD
Ludwig Maximilian University of Munich
Geschwister-Scholl-Platz 1, 80539 Munich, Germany

Nico Garcia, Dr. Sc

Dr. Sc
École Normale Supérieure, Paris
45 Rue d'Ulm, 75005 Paris, France

Robin Robinson, Professor

Professor
University of Toronto
27 King's College Circle, Toronto, ON M5S 1A1, Canada

References

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Published

2025-12-24

Issue

Section

Articles