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Boundary Modes from Periodic Magnetic and Pseudomagnetic Fields in Graphene

ORAL

Abstract



Single-layer graphene subject to periodic lateral strains is an artificial crystal that can support boundary spectra with an intrinsic polarity. This is analyzed by comparing the effects of periodic magnetic fields and strain-induced pseudomagnetic fields that, respectively, break and preserve time-reversal symmetry. In the former case, a Chern classification of the superlattice minibands with zero total magnetic flux enforces single counterpropagating modes traversing each bulk gap on opposite boundaries of a nanoribbon. For the pseudomagnetic field, pairs of counterpropagating modes migrate to the same boundary where they provide well-developed valley-helical transport channels on a single zigzag edge. We discuss possible schemes for implementing this situation and their experimental signatures.

Publication: Phys. Rev. Lett. 128, 176406 – Published 29 April 2022

Presenters

  • Phong T Vo

    University of Pennsylvania

Authors

  • Phong T Vo

    University of Pennsylvania

  • Eugene J Mele

    University of Pennsylvania