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Atomic and Electronic Structure of Twisted Ultrathin Perovskite Bilayers

ORAL

Abstract

The successes of van der Waals twistronics make it only natural to study similar twist-related moiré behavior in different crystal systems. One promising material family is the perovskite oxides, for which there is already experimental progress in synthesis and device fabrication. In particular, the n=1 Ruddlesden-Popper phase, A2BO4, forms a basic model of ultrathin perovskite bilayers. Based on the results of DFT calculations of commensurate twisted bilayers formed from A2TiO4 monolayers (A=Ca, Sr, Ba), with twist angles in the range of 8.8°-37°, we characterize the local environments formed by various stacking arrangements present in the full moiré structure. Furthermore, the explicit DFT calculation of the electronic structure is crucial for validation of the approximate models we construct based on the tight binding and configuration space formalism, which will be described in a companion presentation.

Presenters

  • Daniel T Larson

    Harvard University

Authors

  • Daniel T Larson

    Harvard University

  • Efthimios Kaxiras

    Harvard University

  • Daniel Bennett

    Harvard University

  • Raagya Arora

    Harvard University

  • Anderson S Chaves

    Harvard University

  • Abduhla Ali

    Cooper Union

  • Karin M Rabe

    Rutgers University