English

Critical magnetic fields and electron-pairing in magic-angle twisted bilayer graphene

Superconductivity 2021-02-23 v1

Abstract

The velocities of the quasiparticles that form Cooper pairs in a superconductor are revealed by the upper critical magnetic field. Here we use this property to assess superconductivity in magic-angle twisted bilayer graphene (MATBG), which has been observed over a range of moir\'e band filling, twist angle, and screening environment conditions. We find that for pairing mechanisms that are unrelated to correlations within the MATBG flat bands, minima in an average Fermi velocity vFkBTcc/v_F^* \equiv k_B T_c \ell_c /\hbar , where c\ell_c is the magnetic length at the critical perpendicular magnetic field, are always coincident with transition temperature maxima. Both extrema occur near flat-band van Hove singularities. Since no such association is present in MATBG experimental data, we conclude that electronic correlations that yield a band-filling-dependent pairing glue must play a crucial role in MATBG superconductivity.

Keywords

Cite

@article{arxiv.2102.10504,
  title  = {Critical magnetic fields and electron-pairing in magic-angle twisted bilayer graphene},
  author = {Wei Qin and Bo Zou and Allan H. MacDonald},
  journal= {arXiv preprint arXiv:2102.10504},
  year   = {2021}
}

Comments

MS: 6 pages, 4 figures, SM: 13 pages, 7 figures

R2 v1 2026-06-23T23:21:58.162Z