Observation of three-state nematicity in the triangular lattice antiferromagnet Fe$_{1/3}$ NbS$_2$
Abstract
Nematic order is the breaking of rotational symmetry in the presence of translational invariance. While originally defined in the context of liquid crystals, the concept of nematic order has arisen in crystalline matter with discrete rotational symmetry, most prominently in the tetragonal Fe-based superconductors where the parent state is four-fold symmetric. In this case the nematic director takes on only two directions, and the order parameter in such "Ising-nematic" systems is a simple scalar. Here, using a novel spatially-resolved optical polarimetry technique, we show that a qualitatively distinct nematic state arises in the triangular lattice antiferromagnet FeNbS. The crucial difference is that the nematic order on the triangular lattice is a Z, or three-state Potts-nematic order parameter. As a consequence, the anisotropy axes of response functions such as the resistivity tensor can be continuously re-oriented by external perturbations. This discovery provides insight into realizing devices that exploit analogies with nematic liquid crystals.
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Cite
@article{arxiv.1908.00657,
title = {Observation of three-state nematicity in the triangular lattice antiferromagnet Fe$_{1/3}$ NbS$_2$},
author = {Arielle Little and Changmin Lee and Caolan John and Spencer Doyle and Eran Maniv and Nityan L. Nair and Wenqin Chen and Dylan Rees and Jörn W. F. Venderbos and Rafael Fernandes and James G. Analytis and Joseph Orenstein},
journal= {arXiv preprint arXiv:1908.00657},
year = {2020}
}
Comments
The main text is 16 pages, including 5 figures and references. Supplementary information is appended at the end of the article