Superconductivity in Twisted Bilayer Graphene

Authors

  • Morgan Martin PhD
  • Kim White Prof.
  • Drew Campbell Dr.

Keywords:

Superconductivity, Twisted Bilayer Graphene, Quantum Materials, Electronic Properties, Computational Physics

Abstract

This paper explores the phenomenon of superconductivity in twisted bilayer graphene. The study investigates the electronic properties that emerge when graphene layers are slightly rotated relative to each other. Using advanced computational methods, the research uncovers the conditions under which superconductivity can be induced, offering insights into the design of new quantum materials with high superconducting transition temperatures.
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Author Biographies

Morgan Martin, PhD

PhD
Delft University of Technology
Mekelweg 5, 2628 CD Delft, Netherlands

Kim White, Prof.

Prof.
University of Bologna
Via Zamboni, 33, 40126 Bologna BO, Italy

Drew Campbell, Dr.

Dr.
University of São Paulo
Av. Prof. Luciano Gualberto, 380 - Butantã, São Paulo - SP, 05508-010, Brazil

References

Boynazarov, T., Ryu, D. H., Cho, A. Y., Abbas, H., & Choi, T. (2025). Flexible Hf0. 5Zr0. 5O2/La0. 7Sr0. 3MnO3 Heterostructure by Water-Etching Transfer for Tunable Multilevel RRAM in Neuromorphic Computing. Journal of Alloys and Compounds, 184383.

Published

2025-12-24

Issue

Section

Articles