English

Strain-tunable magnetic correlations in spin liquid candidate Nb$_3$Cl$_8$

Mesoscale and Nanoscale Physics 2026-01-22 v1 Materials Science

Abstract

Recent research suggests the possibility of the two-dimensional breathing-Kagome magnet Nb3_3Cl8_8 hosting a quantum spin liquid state, warranting further study into its magnetic properties. Using ab initio calculations, we show that monolayer Nb3_3Cl8_8 has short-range antiferromagnetic correlations among Nb3_3 trimers with S = 1/2, and becomes magnetically frustrated due to the underlying effective triangular lattice geometry, and is evidenced by a frustration index of f > 1. The high-temperature susceptibility shows a negative Weiss temperature from Monte Carlo calculations. Considering spin-orbit coupling, we investigate the magnetic anisotropy, including anisotropic exchange, single-ion anisotropy and the Dzyaloshinskii-Moriya interaction using the four-state energy mapping formalism. Although the elements have relatively small atomic numbers, the Dzyaloshinskii-Moriya interaction is comparable in magnitude to the anisotropic exchange. Additionally, we show that biaxial strain tunes the short-range correlations between antiferromagnetic, paramagnetic and ferromagnetic. These findings strengthen our understanding of Nb3_3Cl8_8 and advance its applications in current condensed matter physics and materials science research, including nanoscale mechanical and spintronics applications.

Keywords

Cite

@article{arxiv.2601.14524,
  title  = {Strain-tunable magnetic correlations in spin liquid candidate Nb$_3$Cl$_8$},
  author = {Tharindu Fernando and Ting Cao},
  journal= {arXiv preprint arXiv:2601.14524},
  year   = {2026}
}