Antiferromagnetic Kitaev Interaction in -Electron Based Honeycomb Magnets
Abstract: We theoretically propose a family of -electron based magnets that realizes Kitaev-type bond-dependent anisotropic interactions. Based on {\it ab initio} calculations, we show that PrO (: alkali metals) crystalize in a triclinic structure with honeycomb layers of edge-sharing PrO octahedra. Each Pr cation has a $4f$ electron in the doublet, which comprises a spin-orbital entangled Kramers pair with the effective moment . By using the Wannier orbitals from the {\it ab initio} calculations, we find that the effective interactions between the moments are predominantly of {\it antiferromagnetic} Kitaev type for light alkali metals =Li and Na, in stark contrast to the ferromagnetic ones in $4d$- and $5d$-electron based materials. Our finding would provide a playground for the Kitaev spin liquids that is hard to be accessed by the candidates ever discovered.
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