paper

A microscopic design rule for spin supersolids in triangular-lattice magnets

arXiv:2606.06111

Abstract

Spin supersolids emerge as a central topic in frustrated magnetism, motivating the search for realization in quantum materials. To this end, we study the origin of exchange anisotropy, , in triangular-lattice cobaltate families Co(PO) and Co(SeO) ( = Na, K, Rb, Cs; = Mg, Ca, Sr, Ba) by tailoring realistic spin models. We show that is determined by the ratio of trigonal crystal field to spin-orbit coupling strength. This framework explains contrasting anisotropies in these families, predicts systematic trends in across -substitutions, and identifies candidate materials for spin supersolids. Our results establish trigonal field engineering as a microscopic route toward the design of spin supersolids.

13 pages, 7 figures

A microscopic design rule for spin supersolids in triangular-lattice magnets · wovepaper