Empirical Investigation of Quantum Entanglement in Topological Insulators: A Case Study of Weyl Semimetals

Authors

  • Skyler Nelson PhD
  • Quinn Thomas Professor
  • Dana Allen Associate Professor
  • Sophia Adams Dr. Sc

Keywords:

Quantum Entanglement, Topological Insulators, Weyl Semimetals, Entanglement Entropy, Quantum Computing

Abstract

This study delves into the quantum entanglement properties of topological insulators, with a specific focus on Weyl semimetals. Employing advanced entanglement entropy measures, we examine the role of surface states and their contribution to the entanglement spectrum. Our methodology integrates both theoretical models and experimental validations, providing a robust framework for understanding the quantum coherence in such materials. The findings reveal critical insights into the manipulation of quantum states, contributing to the potential development of quantum computing technologies.

Author Biographies

Skyler Nelson, PhD

PhD
Massachusetts Institute of Technology
77 Massachusetts Avenue, Cambridge, MA 02139, USA

Quinn Thomas, Professor

Professor
Technical University of Munich
Arcisstraße 21, 80333 München, Germany

Dana Allen, Associate Professor

Associate Professor
University of Tokyo
7 Chome-3-1 Hongo, Bunkyo City, Tokyo 113-8654, Japan

Sophia Adams, Dr. Sc

Dr. Sc
University of Cambridge
The Old Schools, Trinity Ln, Cambridge CB2 1TN, UK

References

Gojayeva, L. (2025). Modern methods of teaching literature. OEIL Research Journal, 23(11), 304.

Published

2026-03-31

Issue

Section

Articles