English

Tuning magnetic states in CrI$_3$ bilayers via Moir\'e patterns

Materials Science 2022-01-06 v2

Abstract

Commensurable twisted bilayers can drastically change the magnetic properties of chromium trihalide layered compounds, which opens novel opportunities for tuning magnetic states through layer rotations. Here, we introduce a mathematical approach to obtain moir\'e patterns in twisted hexagonal bilayers by performing a certain commensurable rotation θ\theta over one layer. To test our approach, we apply it to find moir\'e structures with θ=21.79\theta=21.79^{\circ} and 32.2032.20^{\circ} in the phases R3ˉ\bar{3} and C2/m of CrI3_{3}. For comparison purposes, we also consider a non-shifted CrI3_{3} structure. Electronic and magnetic properties of the so-obtained systems are computed by \textit{Ab-Initio} methodologies. Results show the presence of rotation-angle-dependent magnetic configurations and steep modifications of the dispersion bands due to variations in the nearest and next nearest distances among layers of Cr atoms. Modifications obtained from these commensurable rotations are discussed on the basis of competition among different energy contributions due to changes in the atomic arrangements.

Keywords

Cite

@article{arxiv.2106.03258,
  title  = {Tuning magnetic states in CrI$_3$ bilayers via Moir\'e patterns},
  author = {A. M. León and E. A. Velásquez and F. Caro-Lopera and J. Mejía-López},
  journal= {arXiv preprint arXiv:2106.03258},
  year   = {2022}
}

Comments

10 pages, 6 figures

R2 v1 2026-06-24T02:53:28.508Z