English

Coulomb screening of superconductivity in magic-angle twisted bilayer graphene

Mesoscale and Nanoscale Physics 2024-12-03 v1 Superconductivity

Abstract

The origin of superconductivity in magic-angle twisted bilayer graphene has been a subject of intense debate. While some experimental evidence indicated an unconventional pairing mechanism, efforts to tune the critical temperature by screening the Coulomb interactions have been unsuccessful, possibly indicating a conventional phonon-mediated pairing. Here we study a double-layer electronic system consisting of two twisted graphene bilayers in immediate proximity of each other but remaining electronically decoupled. By increasing the carrier density in one bilayer, we completely suppressed both the superconductivity and the correlated-insulator state in the adjacent magic-angle graphene. The observation of such a screening effect offers strong support for an unconventional mechanism of Cooper pairing in magic-angle twisted bilayer graphene, shedding new light on the underlying physics governing their properties.

Keywords

Cite

@article{arxiv.2412.01577,
  title  = {Coulomb screening of superconductivity in magic-angle twisted bilayer graphene},
  author = {Julien Barrier and Liangtao Peng and Shuigang Xu and V. I. Fal'ko and K. Watanabe and T. Tanigushi and A. K. Geim and S. Adam and Alexey I. Berdyugin},
  journal= {arXiv preprint arXiv:2412.01577},
  year   = {2024}
}

Comments

25 pages, 9 figures