4.8 Article

Hierarchy of Ideal Flatbands in Chiral Twisted Multilayer Graphene Models

Journal

PHYSICAL REVIEW LETTERS
Volume 128, Issue 17, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.128.176403

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Funding

  1. National Key Research and Development Program of China [2020YFA0309200]

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This paper proposes models of twisted multilayer graphene that have exactly flat Bloch bands with arbitrary Chern numbers and ideal band geometries. The ideal band geometries and high Chern numbers of the flatbands imply the possibility of hosting exotic fractional Chern insulators, which have unique properties under short-range interactions.
We propose models of twisted multilayer graphene that exhibit exactly flat Bloch bands with arbitrary Chern numbers and ideal band geometries. The models are constructed by twisting two sheets of Bernalstacked multiple graphene layers with only intersublattice couplings. Analytically we show that flatband wave functions in these models exhibit a momentum space holomorphic character, leading to ideal band geometries. We also explicitly demonstrate a generic ???wave function exchange??? mechanism that generates the high Chern numbers of these ideal flatbands. The ideal band geometries and high Chern numbers of the flatbands imply the possibility of hosting exotic fractional Chern insulators which do not have analogues in continuum Landau levels. We numerically verify that these exotic fractional Chern insulators are model states for short-range interactions, characterized by exact ground-state degeneracies at zero energy and infinite particle-cut entanglement gaps.

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