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Multiferroic Metallic Monolayer Cu(CrSe2)2

Materials Science 2025-03-03 v2 Mesoscale and Nanoscale Physics

Abstract

The two-dimensional (2D) Cu(CrSe2_2)2_2 monolayer stands out for its combined ferromagnetic (FM), ferroelectric (FE), and metallic properties, marking itself as a prominent 2D multiferroic metal. This work studies those properties and the relevant physics, using density functional calculations, Monte Carlo simulations, and abab initioinitio molecular dynamics. Our results show that Cu(CrSe2_2)2_2 monolayer is in the Cr3+^{3+} t2g3t_{2g}^3 state with SS = 3/2 and Cu1+^{1+} 3d103d^{10} with SS = 0. The observed in-plane magnetic anisotropy primarily arises from exchange anisotropy, which is associated with the Cr-Se-Cr itinerant ferromagnetism. In contrast, both single-ion anisotropy and shape magnetic anisotropy contribute negligibly. The Dzyaloshinskii-Moriya interaction is also quite weak, only about 3\% of the intralayer exchange parameters. Our Monte Carlo simulations show a FM Curie temperature (TCT_{\rm C}) of 190 K. Moreover, the monolayer exhibits a vertical FE polarization of 1.79 pC/m and a FE polarization switching barrier of 182 meV/f.u., and the FE state remains stable above room temperature as shown by abab initioinitio molecular dynamics simulations. Furthermore, a magnetoelectric coupling is partially manifested by a magnetization rotation from in-plane to out-of-plane associated with a FE-to-paraelectric transition. The magnetization rotation can also be induced by either hole or electron doping, and the hole doping increases the TCT_{\rm C} up to 238 K. In addition, tensile strain reduces the FE polarization but enhances TCT_{\rm C} to 290 K, while a compressive strain gives an opposite effect. Therefore, the multiferroic metallic Cu(CrSe2_2)2_2 monolayer may be explored for advanced multifunctional electronic devices.

Keywords

Cite

@article{arxiv.2408.16363,
  title  = {Multiferroic Metallic Monolayer Cu(CrSe2)2},
  author = {Ke Yang and Yuxuan Zhou and Yaozhenghang Ma and Hua Wu},
  journal= {arXiv preprint arXiv:2408.16363},
  year   = {2025}
}

Comments

14 pages, 7 figures

R2 v1 2026-06-28T18:27:25.925Z