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Observation of dodecagonal replica bands in 30-twisted bilayer WSe2

Christian Valentiner-Branth Fokdal, Chakradhar Sahoo, Thomas S. Nielsen, Alfred J. H. Jones, Zhihao Jiang, Kenji Watanabe, Takashi Taniguchi, Marcin Mucha-Kruczyński, Søren Ulstrup

cond-mat.mes-hallarXiv:2608.26864

Abstract

Twisted bilayers of two-dimensional (2D) transition metal dichalcogenides are promising systems for achieving tunable quasicrystalline orders with emergent properties. The underpinning electronic structure and scattering processes in 2D quasicrystals with multiorbital dodecagonal replica bands have so far not been determined. Here, we utilize angle-resolved photoemission spectroscopy (ARPES) with micrometer spatial resolution to directly observe replica bands in 30-twisted bilayer WSe2. The symmetry and intensity distribution of the observed replicas are explained by interlayer Umklapp scattering from bottom to top WSe2 layers. Our spectral function measurements are consistent with the presence of a van Hove singularity adjacent to the K-valleys, which underlines the possibility of inducing electronic reconstructions in bilayers with a large interlayer twist angle.

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