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Ho-Pb Monolayers With Kagome and Striped Structures.

Created on 28 Jul 2026

Authors

Alexey N Mihalyuk, Yuriy E Vekovshinin, Leonid V Bondarenko, Aleksandra Y Tupchaya, Viacheslav S Zhdanov, Nikita V Denisov, Dimitry V Gruznev, Sergey V Eremeev, Andrey V Zotov, Aleksander A Saranin

Published in

Small (Weinheim an der Bergstrasse, Germany). Pages e74833. Jul 28, 2026. Epub Jul 28, 2026.

Abstract

Scaling the electronic and magnetic phases to the monolayer limit is able to produce a rich and complex landscape of emergent effects, highly promising for applications in ultracompact spintronic devices. Here, we report on the epitaxial synthesis of a two-dimensional Pb-based kagome monolayer HoPb 3 and suggest a strategy to engineer the periodic structure with alternating HoPb 3 and Pb stripes. Both phases demonstrate a Rashba-like spin polarization and several Van Hove singularities in the band structure, including high-order ones, which potentially may enable the strong electronic correlations. The DFT calculations have predicted that both 2D and quasi-1D phases exhibit an unusual combination of in-plane noncollinear antiferromagnetic alignment of Ho magnetic moments, along with small out-of-plane spin polarization, which makes them ferrimagnets. Furthermore, the striped phase was found to hold the fingerprints of the 1D Tomonaga-Luttinger liquid. Our results offer a versatile approach to control the anisotropy of low-dimensional materials, facilitating the development of tunable spintronic devices.

PMID:
42517249
Bibliographic data and abstract were imported from PubMed on 28 Jul 2026.

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