Nematicity with a twist: Rotational symmetry breaking in a moire superlattice

Motivated by recent reports of nematic order in twisted bilayer graphene (TBG), we investigate the impact of the triangular moire superlattice degrees of freedom on nematicity. In TBG, the nematic order parameter is not Ising like, as in tetragonal crystals, but has a three-state Potts character rel...

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Veröffentlicht in:Science advances 2020-08, Vol.6 (32), p.eaba8834-eaba8834, Article 8834
Hauptverfasser: Fernandes, Rafael M., Venderbos, Jorn W. F.
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Sprache:eng
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Zusammenfassung:Motivated by recent reports of nematic order in twisted bilayer graphene (TBG), we investigate the impact of the triangular moire superlattice degrees of freedom on nematicity. In TBG, the nematic order parameter is not Ising like, as in tetragonal crystals, but has a three-state Potts character related to the threefold rotational symmetry (C-3z) of the moire superlattice. We find that, even in the presence of static strain that explicitly breaks the C-3z symmetry, the system can still undergo a nematic-flop phase transition that spontaneously breaks in-plane twofold rotations. Moreover, elastic fluctuations, manifested as acoustic phonons, mediate a nemato-orbital coupling that ties the nematic director orientation to certain soft directions in momentum space, rendering the Pottsnematic transition mean field and first order. In contrast to the case of rigid crystals, the Fermi surface hot spots associated with these soft directions are maximally coupled to low-energy nematic fluctuations in the moire superlattice case.
ISSN:2375-2548
2375-2548
DOI:10.1126/sciadv.aba8834