Magic Angles and Fractional Chern Insulators in Twisted Homobilayer Transition Metal Dichalcogenides

Nicolás Morales-Durán, Nemin Wei, Jingtian Shi, and Allan H. MacDonald
Phys. Rev. Lett. 132, 096602 – Published 1 March 2024

Abstract

We explain the appearance of magic angles and fractional Chern insulators in twisted K-valley homobilayer transition metal dichalcogenides by mapping their continuum model to a Landau level problem. Our approach relies on an adiabatic approximation for the quantum mechanics of valence band holes in a layer-pseudospin field that is valid for sufficiently small twist angles and on a lowest Landau level approximation that is valid for sufficiently large twist angles. It provides a simple qualitative explanation for the nearly ideal quantum geometry of the lowest moiré miniband at particular twist angles, predicts that topological flat bands occur only when the valley-dependent moiré potential is sufficiently strong compared to the interlayer tunneling amplitude, and provides a convenient starting point for the study of interactions.

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  • Received 8 August 2023
  • Accepted 12 February 2024

DOI:https://doi.org/10.1103/PhysRevLett.132.096602

© 2024 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied Physics

Authors & Affiliations

Nicolás Morales-Durán*, Nemin Wei, Jingtian Shi, and Allan H. MacDonald

  • Department of Physics, The University of Texas at Austin, Austin, Texas 78712, USA

  • *na.morales92@utexas.edu

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Vol. 132, Iss. 9 — 1 March 2024

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