Kitaev physics in the two-dimensional magnet NiPSe$_3$
Abstract
The Kitaev interaction, found in candidate materials such as -RuCl, occurs through the metal ()-ligand ()-metal () paths of the edge-sharing octahedra because the large spin-orbit coupling (SOC) on the metal atoms activates directional spin interactions. Here, we show that even in transition-metal compounds, where the SOC of the metal atom is negligible, heavy ligands can induce bond-dependent Kitaev interactions. In this work, we take as an example the transition-metal chalcogenophosphate NiPSe and show that the key is found in the presence of a sizable SOC on the Se orbital, one which mediates the super-exchange between the nearest-neighbor Ni sites. Our study provides a pathway for engineering enhanced Kitaev interactions through the interplay of SOC strength, lattice distortions, and chemical substitutions.
Keywords
Cite
@article{arxiv.2403.09831,
title = {Kitaev physics in the two-dimensional magnet NiPSe$_3$},
author = {Cheng Peng and Sougata Mardanya and Alexander N. Petsch and Vineet Kumar Sharma and Shuyi Li and Chunjing Jia and Arun Bansil and Sugata Chowdhury and Joshua J. Turner},
journal= {arXiv preprint arXiv:2403.09831},
year = {2024}
}
Comments
Supplementary material is included in the package