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April 12, 2010Physical Review B496 citationsOpen Access

Commensuration and interlayer coherence in twisted bilayer graphene

EME. J. Melé

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Abstract

The low-energy electronic spectra of rotationally faulted graphene bilayers are studied using a long-wavelength theory applicable to general commensurate fault angles. Lattice commensuration requires low-energy electronic coherence across a fault and pre-empts massless Dirac behavior near the neutrality point. Sublattice exchange symmetry distinguishes two families of commensurate faults that have distinct low-energy spectra which can be interpreted as energy-renormalized forms of the spectra for the limiting Bernal and AA stacked structures. Sublattice-symmetric faults are generically fully gapped systems due to a pseudospin-orbit coupling appearing in their effective low-energy Hamiltonians.

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E. J. Melé (2010) studied this question.

synapsesocial.com/papers/6a62d691809dd4a9e2c1a282https://doi.org/10.1103/physrevb.81.161405
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